[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"\"}":3,"_public_publisher_byId_bd8dbcaf-92b7-4bfa-812f-108df8aaee16":656,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"totalCitation\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:bd8dbcaf-92b7-4bfa-812f-108df8aaee16,\"}":689},{"meta":4,"data":6},{"total":5},"117",[7,60,176,207,299,413,445,480,543,572],{"id":8,"createTime":9,"updateTime":10,"relativeEntities":11,"slug":12,"properties":13,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":29,"subjectFields":30,"manageAffiliations":31,"indexDatabases":32,"url":33,"thumbnailPath":34,"statistic":35,"gsStatistic":26,"type":26,"analyzePriority":26},"5a09599f-54d1-44c3-8f16-3847ac552024","2023-08-17T04:28:50.832+00:00","2025-10-13T23:58:52.517+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Truy%E1%BB%81n-nhi%E1%BB%85m-Vi%E1%BB%87t-Nam",{"country":14,"issn":16,"introduce":18,"title":21},{"VOID":15},"VN",{"VOID":17},"08667829",{"EN":19,"VI":20},"{\"ops\":[{\"insert\":\"Vietnam Journal of Infectious Diseases is a social - professional forum of the Vietnam Society for Infectious Diseases, whose responsibility is to introduce the researches, the scientific advances in Vietnam and from the world; to contribute to the improvement of knowledges for health care staffs about clinic, treatment, guideline, prevention, epidemiology for infectious diseases, HIV\u002FAIDS and community health care; to provide, exchange and publish scientific information to the public accurately and promptly.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Vietnam Journal of Infectious Diseases publishes in the whole country; serves the professional work for researchers, clinical staffs, administrators, undergraduate and postgraduate students who are working and studying in the infections, tropical diseases and HIV\u002FAIDS from central to local levels, also organizations and individuals in the world who are interested in infectious and tropical diseases and prevention for HIV\u002FAIDS.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Editor in Chief:\"},{\"attributes\":{\"header\":4},\"insert\":\"\\n\"},{\"insert\":\"Prof. Dr. Nguyen Van Kinh. - Chairman of Editorial Board\"},{\"attributes\":{\"align\":\"justify\",\"blockquote\":true},\"insert\":\"\\n\"},{\"insert\":\"Prof. Dr. Nguyen Van Mui.\"},{\"attributes\":{\"align\":\"justify\",\"blockquote\":true},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Headquarter:\"},{\"attributes\":{\"header\":4},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Address:\"},{\"insert\":\" Level 6, National Hospital for Tropical Diseases, No. 78 Giai Phong Street, Dong Da District, Hanoi city, Vietnam.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Tel:\"},{\"insert\":\" \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Ftel:02435765464\"},\"insert\":\"02435765464\"},{\"insert\":\"; \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Ftel:0913552672\"},\"insert\":\"0913552672\"},{\"insert\":\"; \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Ftel:0913228072\"},\"insert\":\"0913228072\"},{\"insert\":\".\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Email\"},{\"insert\":\": \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Findex\u002Fadmin\u002Fcontexts\u002Fmailto:tungphamvan52@gmail.com\"},\"insert\":\"tungphamvan52@gmail.com\"},{\"insert\":\"; \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Fmailto:tapchitruyennhiem@gmail.com\"},\"insert\":\"tapchitruyennhiem@gmail.com\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Bank account:\"},{\"insert\":\" 0021000275119, Vietcombank Hanoi Branch. Transaction office No. 7, 402 Tran Khat Chan, Hai Ba Trung District, Hanoi city, Vietnam.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}","{\"ops\":[{\"insert\":\"Tạp chí Truyền nhiễm Việt Nam là cơ quan ngôn luận của Hội Truyền nhiễm Việt Nam, chịu sự lãnh đạo, chỉ đạo trực tiếp của Thường vụ Ban Chấp hành Hội Truyền nhiễm Việt Nam; sự kiểm tra, giám sát về nghiệp vụ báo chí của các cơ quan chức năng quản lý báo chí thuộc Bộ Thông tin và Truyền thông và Ban Tuyên giáo Trung ương Đảng.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Tạp chí có trách nhiệm giới thiệu các công trình nghiên cứu khoa học, những tiến bộ khoa học trên thế giới và trong nước, góp phần nâng cao kiến thức khoa học cho cán bộ y tế về lâm sàng, điều trị, hướng dẫn, dự phòng, dịch tễ học các bệnh truyền nhiễm, HIV\u002FAIDS và chăm sóc sức khỏe cộng đồng; cung cấp, trao đổi, phổ biến các thông tin khoa học tới công chúng chính xác và kịp thời.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Tạp chí xuất bản 03 tháng\u002F01 kỳ và được phát hành qua Bưu điện và tự phát hành trong phạm vi toàn quốc.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Lãnh đạo Tạp chí: \"},{\"attributes\":{\"header\":4},\"insert\":\"\\n\"},{\"insert\":\"Tổng Biên tập: ThS.BSCKII Nguyễn Trung Cấp\"},{\"attributes\":{\"align\":\"justify\",\"blockquote\":true},\"insert\":\"\\n\"},{\"insert\":\"Phó Tổng Biên tập:\"},{\"attributes\":{\"align\":\"justify\",\"blockquote\":true},\"insert\":\"\\n\"},{\"insert\":\"            TS.BSCKII Phạm Ngọc Thạch\"},{\"attributes\":{\"align\":\"justify\",\"blockquote\":true},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Trụ sở tòa soạn:\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Địa chỉ: Tầng 6, Bệnh viện Bệnh Nhiệt đới Trung ương, 78 đường Giải Phóng, phường Phương Mai, quận Đống Đa, thành phố Hà Nội.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Điện thoại:\"},{\"insert\":\" \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Ftel:02435765464\"},\"insert\":\"02435765464\"},{\"insert\":\" - \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Ftel:0913228072\"},\"insert\":\"0913228072\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Email\"},{\"insert\":\": \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Findex\u002Fadmin\u002Fcontexts\u002Fmailto:tungphamvan52@gmail.com\"},\"insert\":\"tungphamvan52@gmail.com\"},{\"insert\":\"; \"},{\"attributes\":{\"color\":\"#008d45\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fbvnd.vojs.vn\u002Findex.php\u002Fvjid\u002Fmanagement\u002Fsettings\u002Fcontext\u002Fmailto:tapchitruyennhiem@gmail.com\"},\"insert\":\"tapchitruyennhiem@gmail.com\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Tài khoản:\"},{\"insert\":\" Số 0021000275119 Ngân hàng Ngoại thương Việt Nam, chi nhánh Hà Nội (Vietcombank Hà Nội). Phòng giao dịch số 7, 402 Trần Khát Chân, quận Hai Bà Trưng, Thành phố Hà Nội.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}",{"EN":22,"VI":23},"Vietnam Journal of Infectious Diseases","Tạp chí Truyền nhiễm Việt Nam","PUBLISHER","VERIFIED",null,"Admin update database","PENDING",51,[],[],[],"https:\u002F\u002Ftruyennhiemvietnam.vn\u002Findex.php\u002Fvjid","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F5a09599f-54d1-44c3-8f16-3847ac552024\u002Fadb0e52bf25e0de580fd4289519cb8bf.jpg",{"impactFactor":36,"impactFactorByYear":37,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":41,"totalPublicationByYear":42,"totalCitation":48,"totalCitationByYear":49,"totalCitationPerPublication":54,"totalCitationPerPublicationByYear":55,"hindexLast5Year":59,"hindex":59},0,{"2022":38,"2023":39,"2024":40},0.01,0.03,0.13,315,{"2020":43,"2021":44,"2022":45,"2023":46,"2024":47},63,58,57,65,72,43,{"2020":50,"2021":51,"2022":52,"2023":53},8,15,9,11,0.14,{"2020":40,"2021":56,"2022":57,"2023":58},0.26,0.16,0.17,3,{"id":61,"createTime":62,"updateTime":63,"relativeEntities":64,"slug":65,"properties":66,"entityType":24,"verifyStatus":25,"verifyTime":78,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":79,"subjectFields":80,"manageAffiliations":81,"indexDatabases":136,"url":137,"thumbnailPath":26,"statistic":138,"gsStatistic":155,"type":175,"analyzePriority":26},"25b6bd10-676c-40c0-8dc3-356d1679a284","2023-05-19T02:22:33.430+00:00","2026-06-18T23:33:57.141+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Y-D%C6%B0%E1%BB%A3c-h%E1%BB%8Dc-C%E1%BA%A7n-Th%C6%A1",{"country":67,"issn":68,"introduce":70,"title":73,"gsId":76},{"VOID":15},{"VOID":69},"23541210",{"EN":71,"VI":72},"\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">04\u002F10\u002F2015 Ministry of Information and Communications allowed Can Tho journal of medicine and pharmacy to operate (102 \u002FGP-BTTTT)\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">07\u002F16\u002F2015 Can Tho journal of medicine and pharmacy is internationally recognized: ISSN 2354-1210\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">In 2016, The journal has been included in the list of medical science journals by The State Council for professorship which is awarded a work score of 0-0.5 points for a published article.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Can Tho Journal of Medicine and Pharmacy welcome original works that haven’t been submitted or published in other medical journals. Posts must contain content related to one of the journal’s categories.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The content published\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The journal is divided into 3 categories:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Scientific research article: are valuable scientific works, which have been researched and accepted.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Overview of medicine, biology and pharmacy: serving the objective of continuing training in the fields of medicine, biology and pharmacy; to systematize classical and modern knowledge.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Update information on new knowledge about medicine, biology, pharmacy in the country and in the world.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Scope\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Publication and introduction of scientific research in the fields:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Medicine (internal medicine, surgery, pediatrics, obstetrics and gynecology, odonto-stomatology, laboratory, oncology, traditional medicine, nursing).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Biology (genetics, biotechnology).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Pharmacology (pharmaceutics, drug quality analysis-control, synthetic pharmaceutical chemistry, biochemistry, pharmacognosy, botany, clinical pharmacy).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- To enhance the quality of undergraduate, postgraduate education, scientifically researching and meet the necessary treatment in hospital.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Introducing the updated domestic and oversea information about science technology to promote scientific research and exchanging technology in local, other universities.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Exchanging pharmaceutical and medical information for social health developing in the Mekong Delta and Vietnam.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The object\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Postgraduate students, student of Can Tho University of Medicine and Pharmacy, scientists from schools, research institutes, hospitals, health centers, pharmaceutical companies of the Mekong Delta; other provinces and regions in Vietnam and other country.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Address\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Headquarters of Can Tho Journal of Medicine and Pharmacy, located Scientific Research and International Cooperation Office: 179 Nguyen Van Cu Street, An Khanh Ward, Ninh Kieu District, Can Tho City, Vietnam.\u003C\u002Fspan>\u003C\u002Fp>","\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Ngày 16\u002F7\u002F2015, Tạp chí Y Dược học Cần Thơ được cấp chỉ số quốc tế: ISSN 2354-1210.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 4\u002F2016, Tạp chí đã được Hội đồng Giáo sư ngành Y đưa vào danh sách các tạp chí khoa học Y học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Năm 2020 Tạp chí Y Dược học Cần Thơ đã được phê duyệt vào danh mục của các Hội đồng Giáo sư ngành Dược học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ ra 12 số\u002Fnăm, 180-200 trang\u002Fsố.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 12\u002F2022 Tạp chí Y Dược học Cần Thơ là thành viên của hệ thống Crossref và từ tháng 01\u002F2023 tạp chí thực hiện bình duyệt online kín 2 chiều nhằm tăng tính minh bạch, tin cậy của các công trình nghiên cứu khoa học và đảm bảo tốt nhất chất lượng khoa học của bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ, mục đích và phạm vi của tạp chí\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ và mục đích hoạt động của tạp chí: xuất bản nhằm mục đích phổ biến kết quả từ các đề tài nghiên cứu khoa học; giao lưu trao đổi khoa học, chia sẻ kinh nghiệm, học tập, đồng thời cập nhật thông tin khoa học mới trong các lĩnh vực y, sinh, dược học trong và ngoài nước.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phạm vi của tạp chí: Tạp chí xuất bản được chia thành 3 chuyên mục: (i) Bài báo nghiên cứu khoa học là kết quả công trình nghiên cứu khoa học có giá trị đã được triển khai nghiên cứu, (ii) Bài tổng quan y, sinh, dược học: phục vụ mục tiêu đào tạo liên tục trong lĩnh vực y, sinh, dược học; nhằm hệ thống hóa những kiến thức kinh điển và hiện đại; (iii) Thông tin cập nhật kiến thức mới về y, sinh, dược học trong nước và trên thế giới.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Chính sách truy cập mở\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ áp dụng chính sách truy cập mở đối với các bài báo đã xuất bản đến với độc giả, nhằm mở rộng cơ hội tiếp cận các kết quả nghiên cứu chất lượng cao và tăng cường trao đổi kiến thức. Tạp chí đăng tải trực tuyến (miễn phí) toàn văn các bài báo được công bố trên website của Tạp chí (https:\u002F\u002Ftapchi.ctump.edu.vn).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đạo đức xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ cam kết tuân thủ đạo đức xuất bản phù hợp với các hướng dẫn và tiêu chuẩn của the Committee on Publication Ethics (COPE), tuân thủ các nguyên tắc của COPE’s Core Practices, Best Practices Guidelines for Journal Editors và Guidelines on Good Publication Practices.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Bản thảo bài báo chỉ được chấp nhận khi được tác giả chịu trách nhiệm chính cam kết các nội dung sau: Các nội dung của bản thảo chưa được đăng tải toàn bộ hoặc một phần ở các tạp chí khác; Tất cả các tác giả đều có đóng góp một cách đáng kể vào quá trình nghiên cứu hoặc chuẩn bị bản thảo và cùng chịu trách nhiệm về các nội dung của bản thảo; Tuân thủ các biện pháp đảm bảo đạo đức nghiên cứu (ví dụ thỏa thuận đồng ý tham gia nghiên cứu).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Cam kết bảo mật\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí cam kết thực hiện và tuân thủ các quy định của luật và các văn bản hướng dẫn liên quan đến bảo mật thông tin cá nhân trên không gian mạng. Các thông tin mà người dùng (tác giả, độc giả, biên tập viên, người phản biện) nhập vào các biểu mẫu trên Hệ thống Quản lý xuất bản trực tuyến của tạp chí chỉ được sử dụng vào các mục đích đã được tuyên bố rõ ràng và sẽ không được cung cấp cho bất kỳ bên thứ ba nào khác, hay dùng vào bất kỳ mục đích nào khác.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phí gửi bài\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng bài: 1.000.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng nhanh: 1.500.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với tác giả là cán bộ viên chức thuộc Trường Đại học Y Dược Cần Thơ thì được hỗ trợ 50% lệ phí gửi đăng bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với sinh viên thực hiện đề tài nghiên cứu khoa học cấp trường được hỗ trợ 100% lệ phí đăng bài ( Tác giả gửi đính kèm “ Quyết định về việc giao tổ chức thực hiện đề tài nghiên cứu khoa học cấp Trường của sinh viên”).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Hình thức nộp lệ phí:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Tiền mặt:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Nộp trực tiếp tại Phòng Tài chính - Kế toán, Trường Đại học Y Dược Cần Thơ, số 179 Nguyễn Văn Cừ, P. An Khánh, Q. Ninh Kiều, thành phố Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Chuyển khoản:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tên Tài khoản: Trường ĐHYD Cần Thơ, Số TK: 0111000115668, tại ngân hàng Vietcombank chi nhánh Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Thời gian: Áp dụng từ ngày 01\u002F02\u002F2023.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">* Phí gửi bài không được hoàn trả khi bài viết bị từ chối hoặc tác giả xin rút bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Quy trình phản biện bài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ thực hiện quy trình phản biện kín hai chiều nghiêm ngặt. Danh tính của những người phản biện không được tiết lộ cho các tác giả và ngược lại. Quy trình thẩm định bài báo đăng gồm các bước sau:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tiếp nhận bản thảo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tác giả liên hệ gửi bản thảo đến Tạp chí qua hệ thống trực tuyến tại website: https:\u002F\u002Ftapchi.ctump.edu.vn. Hướng dẫn về cách đăng ký, gửi bài và chuẩn bị bản thảo được cung cấp trên website của Tạp chí.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sàng lọc sơ bộ\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sau khi Tòa soạn nhận được bài báo của tác giả, Ban Thư ký sẽ tiến hành kiểm tra sơ bộ bài báo (các yêu cầu về nội dung và hình thức). Những bài báo không đúng quy cách hoặc có nội dung không phù hợp hoặc vi phạm bản quyền sẽ bị từ chối (Ban Thư ký thông báo phản hồi đến tác giả trong vòng 1 tuần). Những bài báo đủ điều kiện, được Ban Thư ký tòa soạn chuyển đến Ban Biên tập có cùng chuyên môn với nội dung bài báo để đề xuất người phản biện. Thời gian kể từ khi Ban Biên tập nhận bài báo đến khi đề xuất người phản biện bài báo chậm nhất là 5 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Vòng phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký gửi bài và yêu cầu phản biện đến 02 phản biện độc lập.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Các phản biện gởi nhận xét cho Ban Thư ký. Thời gian từ khi gửi bài cho phản biện đến khi nhận ý kiến của phản biện tối đa là 20 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xử ký kết quả phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Nếu ý kiến đồng ý cho đăng và không cần chỉnh sửa, Ban Thư ký tiếp tục đăng bài theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Nếu ý kiến đồng ý đăng và cần chỉnh sửa, Ban Thư ký sẽ thông tin đến tác giả chỉnh sửa theo yêu cầu của người phản biện. Thời gian chỉnh sửa và gửi lại kéo dài không quá 2 tuần, từ khi tác giả bài báo nhận được thông tin (Quá trình này có thể lặp lại tối đa 2 lần\u002F1 bài báo). Khi có sự thống nhất, đồng ý của người phản biện; bài báo được tiếp tục đăng theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Những bài báo có chất lượng không đạt yêu cầu, cả 2 phản biện không đồng ý cho đăng sẽ bị Tòa soạn từ chối đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký tổng hợp các bản thảo đã được tác giả hoàn thiện sau thẩm định trình Ban Biên tập xem xét, Tổng Biên tập phê duyệt, quyết định bài đăng theo các tiêu chí: sự phù hợp nội dung với tôn chỉ và mục đích, thể loại bài viết (ưu tiên các bài có bài có nghiên cứu chuyên sâu, hàm lượng khoa học cao), đóng góp mới bài báo, bài báo được ưu tiên đăng trong số gần nhất của Tạp chí theo thứ tự: tính thời sự, chất lượng bài báo và thời gian gửi bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Ban Biên tập và Ban Thư ký biên tập bản thảo, chế bản, đọc rà soát lỗi. Thời gian hoàn thành từ 10-15 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Ban Thư ký có trách nhiệm thông báo cho tác giả bài báo (bằng e-mail) về tình hình phê duyệt bài báo, thời gian, số kỳ, tập xuất bản bài báo theo qui định.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">4. Danh sách bài báo theo số Tạp chí được in ấn và phát hành trong năm định kỳ được công bố chính thức trên website: https:\u002F\u002Ftapchi.ctump.edu.vn\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>",{"EN":74,"VI":75},"Cantho Journal of Medicine and Pharmacy","Tạp chí Y Dược học Cần Thơ",{"VOID":77},"wcQ1uqwAAAAJ","2023-05-30T08:17:21.868+00:00",32,[],[82],{"id":83,"createTime":84,"updateTime":85,"relativeEntities":86,"slug":87,"properties":88,"entityType":98,"verifyStatus":25,"verifyTime":99,"verifyNote":26,"syncStatus":28,"languages":100,"translateLanguages":26,"viewCount":103,"url":104,"parentIds":105,"statistic":106},"6413896b-eca9-442b-a73f-182a58a0ce40","2023-06-12T14:59:13.446+00:00","2026-06-19T02:29:32.871+00:00",[],"Tr%C6%B0%E1%BB%9Dng-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Y-D%C6%B0%E1%BB%A3c-C%E1%BA%A7n-Th%C6%A1",{"country":89,"title":90,"address":93,"abbreviation":96},{"VOID":15},{"EN":91,"VI":92},"Can Tho University of Medicine and Pharmacy","Trường Đại học Y Dược Cần Thơ",{"VI":94,"EN":95},"Số 179, đường Nguyễn Văn Cừ, phường An Khánh, quận Ninh Kiều, thành phố Cần Thơ, Việt Nam","No 179, Nguyen Van Cu street, An Khanh ward, Ninh Kieu district, Can Tho city, Vietnam",{"VOID":97},"ctump","AFFILIATION","2023-08-01T14:07:27.977+00:00",[101,102],"VI","EN",12,"http:\u002F\u002Fwww.ctump.edu.vn\u002F",[],{"impactFactor":36,"impactFactorByYear":107,"i10Index":111,"i10IndexLast5Year":59,"totalPublication":112,"totalPublicationByYear":113,"totalCitation":122,"totalCitationByYear":123,"totalCitationPerPublication":128,"totalCitationPerPublicationByYear":129,"hindexLast5Year":135,"hindex":135},{"2022":108,"2023":109,"2024":110,"2025":38},0.1,0.05,0.07,4,1489,{"2013":114,"2014":115,"2015":115,"2016":111,"2017":115,"2018":59,"2019":114,"2020":116,"2021":117,"2022":118,"2023":119,"2024":120,"2025":121,"2026":111},2,1,10,84,281,680,260,156,313,{"2013":59,"2014":114,"2018":124,"2021":125,"2022":126,"2023":127},17,36,123,132,0.21,{"2013":130,"2014":114,"2018":131,"2021":132,"2022":133,"2023":134},1.5,5.67,0.43,0.44,0.19,6,[],"https:\u002F\u002Ftapchi.ctump.edu.vn\u002Findex.php\u002Fctump",{"impactFactor":36,"impactFactorByYear":139,"i10Index":114,"i10IndexLast5Year":114,"totalPublication":140,"totalPublicationByYear":141,"totalCitation":147,"totalCitationByYear":148,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":152,"hindexLast5Year":135,"hindex":135},{"2022":38,"2023":36,"2024":39,"2025":38},1956,{"0":114,"2019":114,"2020":50,"2021":142,"2022":143,"2023":144,"2024":145,"2025":146},76,403,789,305,371,524,{"0":114,"2019":135,"2021":124,"2022":149,"2023":150,"2024":111,"2025":114},287,206,0.27,{"0":115,"2019":59,"2021":153,"2022":154,"2023":56,"2024":38,"2025":38},0.22,0.71,{"impactFactor":26,"impactFactorByYear":26,"i10Index":114,"i10IndexLast5Year":114,"totalPublication":156,"totalPublicationByYear":157,"totalCitation":163,"totalCitationByYear":164,"totalCitationPerPublication":169,"totalCitationPerPublicationByYear":170,"hindexLast5Year":135,"hindex":135},461,{"0":158,"2019":114,"2021":159,"2022":160,"2023":161,"2024":158,"2025":162},7,37,296,107,5,419,{"2021":59,"2022":59,"2023":165,"2024":166,"2025":167,"2026":168},71,126,171,41,0.91,{"2021":171,"2022":38,"2023":172,"2024":173,"2025":174},0.08,0.66,18,34.2,"JOURNAL",{"id":177,"createTime":178,"updateTime":179,"relativeEntities":180,"slug":181,"properties":182,"entityType":24,"verifyStatus":25,"verifyTime":193,"verifyNote":26,"syncStatus":28,"languages":194,"translateLanguages":26,"viewCount":36,"subjectFields":195,"manageAffiliations":196,"indexDatabases":197,"url":198,"thumbnailPath":26,"statistic":26,"gsStatistic":199,"type":175,"analyzePriority":26},"f8d0bf97-8d89-482e-b58c-2fc481a0b79b","2025-10-27T06:27:08.591+00:00","2026-06-18T23:33:41.667+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Khoa-h%E1%BB%8Dc-v%C3%A0-C%C3%B4ng-ngh%E1%BB%87-nhi%E1%BB%87t-%C4%91%E1%BB%9Bi",{"country":183,"introduce":184,"gsId":186,"title":188,"issn":191},{"VOID":15},{"EN":185},"\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp;Journal of Tropical Science and Engineering (JTSE) is a multidisciplinary scientific journal, licensed to operate as a print journal in 2012 and an electronic journal in 2024 (License No.1479\u002FGP-BTTTT dated August 20, 2012 and No.91\u002FGP-BTTTT dated April 9, 2024 issued by the Ministry of Information and Communications of Vietnam). The JTSE is headquartered in Hanoi.\u003C\u002Fp>\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp; &nbsp; The JTSE is published every 3 months (4 issues\u002Fyear), publishing research results and overview articles in 3 groups of fields: Tropical Ecology and Environment; Chemistry and Material Sciences; Biomedicine and Pharmacy. In 2022, the JTSE registered the international identifier Digital Object Identifier (DOI): 10.58334\u002Fvrtc.jtst and assigned DOI codes to all articles of the journal. The members of the Editorial Board of the JTSE are prestigious scientists and leading scientists from Vietnam and many countries in the world. The JTSE has been recognized by the Vietnam State Council for Professorship to score scientific articles in Chemistry, Medicine and Biology with scores ranging from 0-0.75 points.\u003C\u002Fp>\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp; Currently, the JTSE is building and perfecting a set of criteria and making efforts to join the List of prestigious&nbsp; international journals with a roadmap to enter Scopus and SCIE in the coming time.\u003C\u002Fp>",{"VOID":187},"MS2_GJQAAAAJ",{"VI":189,"EN":190},"Tạp chí Khoa học và Công nghệ nhiệt đới","Journal of Tropical Science and Engineering",{"VOID":192},"08667535","2025-10-27T06:27:25.058+00:00",[101,102],[],[],[],"https:\u002F\u002Ftapchikhcnnd.com.vn",{"impactFactor":26,"impactFactorByYear":26,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":200,"totalPublicationByYear":201,"totalCitation":161,"totalCitationByYear":203,"totalCitationPerPublication":153,"totalCitationPerPublicationByYear":205,"hindexLast5Year":114,"hindex":114},481,{"0":115,"2020":115,"2021":115,"2022":114,"2024":115,"2025":202,"2026":115},474,{"2017":114,"2018":115,"2019":111,"2020":162,"2021":162,"2022":116,"2023":50,"2024":162,"2025":204,"2026":52},52,{"2020":162,"2021":162,"2022":162,"2024":162,"2025":206,"2026":52},0.11,{"id":208,"createTime":209,"updateTime":210,"relativeEntities":211,"slug":212,"properties":213,"entityType":24,"verifyStatus":25,"verifyTime":221,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":222,"subjectFields":223,"manageAffiliations":224,"indexDatabases":225,"url":226,"thumbnailPath":26,"statistic":227,"gsStatistic":276,"type":175,"analyzePriority":26},"a3d1e82a-57e2-40f9-940e-f5fa8b9ef64a","2023-06-01T07:11:26.039+00:00","2026-06-18T23:33:28.573+00:00",[],"VNU-Journal-of-Science-Earth-and-Environmental-Sciences",{"issn":214,"title":216,"country":218,"gsId":219},{"VOID":215},"26159279",{"EN":217},"VNU Journal of Science: Earth and Environmental Sciences",{"VOID":15},{"VOID":220},"UmXD8vEAAAAJ","2023-06-01T07:17:59.210+00:00",27,[],[],[],"https:\u002F\u002Fjs.vnu.edu.vn\u002FEES",{"impactFactor":36,"impactFactorByYear":228,"i10Index":234,"i10IndexLast5Year":36,"totalPublication":235,"totalPublicationByYear":236,"totalCitation":246,"totalCitationByYear":247,"totalCitationPerPublication":261,"totalCitationPerPublicationByYear":262,"hindexLast5Year":103,"hindex":103},{"2010":229,"2012":40,"2013":230,"2014":230,"2015":231,"2016":54,"2017":171,"2018":109,"2019":110,"2020":57,"2021":232,"2022":233,"2023":151,"2024":58},0.02,0.04,0.09,0.31,0.4,19,656,{"2008":237,"2009":238,"2010":239,"2011":238,"2012":240,"2013":241,"2014":239,"2015":242,"2016":243,"2017":244,"2018":245,"2019":165,"2020":125,"2021":168,"2022":125,"2023":222,"2024":111},23,24,22,28,25,20,146,29,78,1038,{"2008":248,"2009":249,"2010":250,"2011":251,"2012":252,"2013":253,"2014":254,"2015":255,"2016":256,"2017":257,"2018":161,"2019":258,"2020":259,"2021":29,"2022":260},119,64,66,86,38,73,59,31,129,39,97,53,26,1.58,{"2008":263,"2009":264,"2010":59,"2011":265,"2012":266,"2013":267,"2014":268,"2015":269,"2016":270,"2017":271,"2018":272,"2019":272,"2020":273,"2021":274,"2022":275},5.17,2.67,3.58,1.36,2.92,2.68,1.55,0.88,1.34,1.37,1.47,1.24,0.72,{"impactFactor":26,"impactFactorByYear":26,"i10Index":173,"i10IndexLast5Year":135,"totalPublication":277,"totalPublicationByYear":278,"totalCitation":279,"totalCitationByYear":280,"totalCitationPerPublication":288,"totalCitationPerPublicationByYear":289,"hindexLast5Year":158,"hindex":298},113,{"2007":114,"2008":103,"2009":173,"2010":116,"2011":51,"2012":239,"2013":103,"2014":162,"2015":53,"2016":135},616,{"2009":162,"2010":114,"2011":52,"2012":124,"2013":222,"2014":255,"2015":48,"2016":44,"2017":281,"2018":282,"2019":259,"2020":283,"2021":284,"2022":285,"2023":286,"2024":257,"2025":287,"2026":59},54,60,49,47,34,44,33,5.45,{"2009":290,"2010":291,"2011":292,"2012":293,"2013":294,"2014":295,"2015":296,"2016":297},0.28,0.2,0.6,0.77,2.25,6.2,3.91,9.67,14,{"id":300,"createTime":301,"updateTime":302,"relativeEntities":303,"slug":304,"properties":305,"entityType":24,"verifyStatus":25,"verifyTime":316,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":234,"subjectFields":317,"manageAffiliations":318,"indexDatabases":388,"url":389,"thumbnailPath":390,"statistic":391,"gsStatistic":409,"type":175,"analyzePriority":26},"a7166325-6c9e-4db3-8a59-7c879701a372","2023-07-31T04:28:49.231+00:00","2026-06-18T23:33:22.428+00:00",[],"VNU-Journal-of-Science-Policy-and-Management-Studies",{"country":306,"issn":307,"eissn":309,"title":311,"gsId":314},{"VOID":15},{"VOID":308},"26159295",{"VOID":310},"25881116",{"EN":312,"VI":313},"VNU Journal of Science: Policy and Management Studies","Tạp chí Nghiên cứu Chính sách và Quản lý",{"VOID":315},"xKW2E_cAAAAJ","2023-08-01T03:23:46.688+00:00",[],[319],{"id":320,"createTime":321,"updateTime":322,"relativeEntities":323,"slug":324,"properties":325,"entityType":98,"verifyStatus":25,"verifyTime":335,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":336,"url":337,"parentIds":338,"statistic":339},"12466116-8f60-4b01-8faf-2411483a0977","2023-05-30T09:37:38.472+00:00","2026-06-19T02:14:28.352+00:00",[],"Vietnam-National-University",{"country":326,"title":327,"abbreviation":330,"address":332},{"VOID":15},{"EN":328,"VI":329},"Vietnam National University, Hanoi","Đại học Quốc gia Hà Nội",{"VOID":331},"VNU",{"VI":333,"EN":334},"Số 144 Xuân Thủy, Phường Dịch Vọng Hậu, Quận Cầu Giấy, Hà Nội, Việt Nam","No. 144 Xuan Thuy Street, Dich Vong Hau Ward, Cau Giay District, Hanoi, Vietnam","2023-08-02T13:58:17.029+00:00",16,"http:\u002F\u002Fwww.vnu.edu.vn\u002F",[],{"impactFactor":36,"impactFactorByYear":340,"i10Index":285,"i10IndexLast5Year":162,"totalPublication":344,"totalPublicationByYear":345,"totalCitation":354,"totalCitationByYear":355,"totalCitationPerPublication":368,"totalCitationPerPublicationByYear":369,"hindexLast5Year":336,"hindex":336},{"2014":109,"2015":231,"2016":231,"2017":206,"2018":341,"2019":110,"2020":342,"2021":343,"2022":171,"2023":231,"2024":110,"2025":39},0.06,0.18,0.35,1247,{"2003":115,"2004":115,"2005":114,"2006":59,"2007":111,"2008":162,"2009":59,"2010":50,"2011":124,"2012":336,"2013":260,"2014":244,"2015":250,"2016":281,"2017":346,"2018":347,"2019":348,"2020":349,"2021":350,"2022":351,"2023":352,"2024":353,"2025":255,"2026":50},94,88,83,67,176,185,187,93,1644,{"2004":111,"2005":115,"2006":52,"2007":298,"2008":356,"2009":298,"2010":286,"2011":357,"2012":244,"2013":358,"2014":359,"2015":360,"2016":361,"2017":362,"2018":363,"2019":364,"2020":365,"2021":366,"2022":367,"2023":367,"2024":162},13,81,48,70,151,115,109,259,174,181,121,101,1.32,{"2004":111,"2005":370,"2006":59,"2007":371,"2008":372,"2009":373,"2010":374,"2011":375,"2012":376,"2013":377,"2014":378,"2015":379,"2016":380,"2017":381,"2018":382,"2019":383,"2020":384,"2021":385,"2022":386,"2023":387,"2024":109},0.5,3.5,2.6,4.67,5.5,4.76,1.81,1.85,2.41,2.29,2.13,1.16,2.94,2.1,2.7,0.69,0.55,0.54,[],"https:\u002F\u002Fjs.vnu.edu.vn\u002FPaM","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002Fa7166325-6c9e-4db3-8a59-7c879701a372\u002Fecfe83f4bcc60c7023ae04d8900fe0ac.jpg",{"impactFactor":36,"impactFactorByYear":392,"i10Index":111,"i10IndexLast5Year":36,"totalPublication":394,"totalPublicationByYear":395,"totalCitation":399,"totalCitationByYear":400,"totalCitationPerPublication":293,"totalCitationPerPublicationByYear":403,"hindexLast5Year":158,"hindex":158},{"2018":109,"2019":171,"2020":393,"2021":108,"2022":54,"2023":206,"2024":54},0.23,320,{"2015":50,"2016":239,"2017":286,"2018":396,"2019":397,"2020":159,"2021":398,"2022":168,"2023":79,"2024":255},30,35,40,247,{"2015":115,"2016":242,"2017":401,"2018":222,"2019":402,"2020":79,"2021":239,"2022":50,"2023":116},77,50,{"2015":404,"2016":169,"2017":405,"2018":406,"2019":407,"2020":408,"2021":386,"2022":291,"2023":232},0.12,1.75,0.9,1.43,0.86,{"impactFactor":26,"impactFactorByYear":26,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":103,"totalPublicationByYear":410,"totalCitation":234,"totalCitationByYear":411,"totalCitationPerPublication":261,"totalCitationPerPublicationByYear":412,"hindexLast5Year":114,"hindex":59},{"2015":114,"2016":116},{"2016":115,"2017":114,"2018":114,"2019":59,"2020":114,"2021":59,"2022":114,"2023":114,"2024":115,"2026":115},{"2016":108},{"id":414,"createTime":415,"updateTime":416,"relativeEntities":417,"slug":418,"properties":419,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":238,"subjectFields":428,"manageAffiliations":429,"indexDatabases":430,"url":431,"thumbnailPath":26,"statistic":432,"gsStatistic":438,"type":175,"analyzePriority":26},"16e65a3f-d274-47dd-8691-56d76eb58c3d","2023-05-30T09:10:06.062+00:00","2026-06-18T23:33:17.679+00:00",[],"Vietnam-Journal-of-Otorhinolaryngology-Head-and-Neck-Surgery",{"country":420,"issn":421,"title":423,"gsId":426},{"VOID":15},{"VOID":422},"18593704",{"EN":424,"VI":425},"Vietnam Journal of Otorhinolaryngology - Head and Neck Surgery","Tạp chí Tai Mũi Họng Việt Nam",{"VOID":427},"L78B_eIAAAAJ",[],[],[],"https:\u002F\u002Ftapchitaimuihong.vn\u002Findex.php\u002Ftmh",{"impactFactor":36,"impactFactorByYear":433,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":434,"totalPublicationByYear":435,"totalCitation":111,"totalCitationByYear":436,"totalCitationPerPublication":230,"totalCitationPerPublicationByYear":437,"hindexLast5Year":115,"hindex":115},{"2024":229},95,{"2022":52,"2023":286,"2024":255,"2025":53},{"2023":111},{"2023":231},{"impactFactor":26,"impactFactorByYear":26,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":240,"totalPublicationByYear":439,"totalCitation":234,"totalCitationByYear":440,"totalCitationPerPublication":441,"totalCitationPerPublicationByYear":442,"hindexLast5Year":114,"hindex":114},{"2023":53,"2024":116,"2025":135,"2026":115},{"2024":59,"2025":298,"2026":114},0.68,{"2024":443,"2025":444,"2026":114},0.3,2.33,{"id":446,"createTime":447,"updateTime":448,"relativeEntities":449,"slug":450,"properties":451,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":396,"subjectFields":460,"manageAffiliations":461,"indexDatabases":462,"url":463,"thumbnailPath":464,"statistic":465,"gsStatistic":472,"type":175,"analyzePriority":26},"25988add-c322-4eda-afda-63b1559bb824","2023-04-07T03:49:55.817+00:00","2026-06-18T23:32:23.776+00:00",[],"T%E1%BA%A1p%20ch%C3%AD%20Y%20-%20D%C6%B0%E1%BB%A3c%20h%E1%BB%8Dc%20qu%C3%A2n%20s%E1%BB%B1",{"country":452,"issn":453,"title":455,"gsId":458},{"VOID":15},{"VOID":454},"18590748",{"EN":456,"VI":457},"Journal of Military Pharmaco-medicine","Tạp chí Y - Dược học quân sự",{"VOID":459},"_pmQ8IEAAAAJ",[],[],[],"https:\u002F\u002Fjmpm.vn\u002Findex.php\u002Fjmpm","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F25988add-c322-4eda-afda-63b1559bb824\u002F09c6bc42157cf5ece95edc971ccddb52.jpg",{"impactFactor":36,"impactFactorByYear":466,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":467,"totalPublicationByYear":468,"totalCitation":135,"totalCitationByYear":470,"totalCitationPerPublication":38,"totalCitationPerPublicationByYear":471,"hindexLast5Year":115,"hindex":115},{"2023":229,"2024":38},475,{"2022":168,"2023":365,"2024":469,"2025":124},236,{"2022":114,"2023":111},{"2022":109,"2023":229},{"impactFactor":26,"impactFactorByYear":26,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":277,"totalPublicationByYear":473,"totalCitation":401,"totalCitationByYear":474,"totalCitationPerPublication":441,"totalCitationPerPublicationByYear":475,"hindexLast5Year":59,"hindex":59},{"2015":115,"2018":114,"2019":115,"2020":115,"2021":59,"2022":103,"2023":159,"2024":287,"2025":237},{"2020":115,"2021":115,"2022":115,"2023":52,"2024":237,"2025":79,"2026":116},{"2020":115,"2021":476,"2022":171,"2023":477,"2024":478,"2025":479},0.33,0.24,0.7,1.39,{"id":481,"createTime":482,"updateTime":483,"relativeEntities":484,"slug":485,"properties":486,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"syncStatus":28,"languages":496,"translateLanguages":26,"viewCount":45,"subjectFields":497,"manageAffiliations":498,"indexDatabases":525,"url":526,"thumbnailPath":527,"statistic":528,"gsStatistic":26,"type":26,"analyzePriority":26},"2b8d7b12-2d20-4777-be98-077f44f03c69","2023-09-07T07:40:58.286+00:00","2025-07-13T21:21:00.542+00:00",[],"VNU-Journal-of-Social-Sciences-and-Humanities",{"country":487,"issn":488,"introduce":490,"title":493},{"VOID":15},{"VOID":489},"23541172",{"EN":491,"VI":492},"{\"ops\":[{\"insert\":\"VNU Journal of Social Sciences and Humanities (ISSN 2354-1172) is a double-blind peer-reviewed journal published by University of Social Sciences and Humanities, Vietnam National University, Hanoi, Vietnam, under the publication permit no. 155\u002FGP-BTTTT, issued on 11\"},{\"attributes\":{\"script\":\"super\"},\"insert\":\"th \"},{\"insert\":\"May, 2015 by Ministry of Information and Communications. The journal publishes four Vietnamese issues and two English issues per year.\\nCurrently, there are 35 reputable professors in the editorial board. The main objectives of the journal include: providing an intellectual platform for Vietnamese and international scholars; promoting interdisciplinary studies in social sciences and humanities; becoming the leading journal in social sciences and humanities in Vietnam; being indexed by worldwide databases and having academic recognition internationally in the near future.\\nThe journal is currently indexed by Google Scholar, WorldCat, Open Archives, Cosmos Impact Factor, Advanced Sciences Index, Scientific Indexing Services, CrossRef, EBSCO Information Services and Vietnam National University’s digital archive.\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Journal of Social Sciences and Humanities-Vietnam\"},{\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"ISSN 2354-1172, email: tapchikhxhnv@gmail.com, tckhxhnv@vnu.edu.vn\"},{\"insert\":\"\\n\"}]}","{\"ops\":[{\"insert\":\"Được thành lập ngày 31\u002F8\u002F2015 (giấy phép hoạt động số 155\u002FGP-BVHTT ngày 11 tháng 5 năm 2015 của Bộ Thông tin và Truyền thông, mã số tiêu chuẩn quốc tế ISSN 2354-1172), Tạp chí Khoa học Xã hội và Nhân văn (Journal of Social Sciences and Humanities) là ấn phẩm khoa học chính thức, duy nhất của Trường Đại học Khoa học Xã hội và Nhân văn, ĐHQG Hà Nội, phát triển và kế thừa Chuyên san Khoa học Xã hội và Nhân văn, Tạp chí Khoa học, ĐHQG Hà Nội.\\nTạp chí xuất bản định kỳ (04 số tiếng Việt\u002Fnăm và 02 số tiếng Anh\u002Fnăm), có nhiệm vụ \"},{\"attributes\":{\"italic\":true},\"insert\":\"công bố, giới thiệu các công trình nghiên cứu khoa học khoa học xã hội và nhân văn của các tác giả là các nhà khoa học trong và ngoài nước, phục vụ giảng dạy, học tập và nghiên cứu khoa học\"},{\"insert\":\". Hội đồng biên tập của Tạp chí hiện bao gồm 33 nhà khoa học có uy tín trong nước và quốc tế. Tạp chí tập trung và ưu tiên đăng tải những bài báo theo định hướng của tinh thần cởi mở, sáng tạo, nhanh chóng vươn lên để tiếp cận và sánh ngang với các tạp chí có uy tín hàng đầu của khu vực và trên thế giới. Nội dung chính của Tạp chí bao gồm các Bài nghiên cứu (khoảng 6000 đến 15000 từ), các bài điểm sách, thông tin khoa học (khoảng 300 đến 1500 từ) được trình bày theo đúng cấu trúc và chuẩn mực của một tạp chí khoa học.\\nCác bài viết của Tạp chí hiện đang được trích dẫn bởi Google Scholar, WorldCat, Open Archives, Cosmos Impact Factor, Advanced Sciences Index, Scientific Indexing Services, CrossRef, EBSCO Information Services.\\nMọi thông tin xin liên hệ: \"},{\"attributes\":{\"italic\":true},\"insert\":\"Phòng Tạp chí, 701 - E, Trường Đại học Khoa học Xã hội và Nhân văn, 336 Nguyễn Trãi, Thanh Xuân, Hà Nội. ĐT: 024.35581984; email: tckhxhnv@vnu.edu.vn \"},{\"insert\":\"hoặc \"},{\"attributes\":{\"italic\":true},\"insert\":\"tapchikhxhnv@gmail.com \"},{\"insert\":\"\\n\"}]}",{"EN":494,"VI":495},"VNU Journal of Social Sciences and Humanities","Tạp chí Khoa học Xã hội và Nhân văn",[101,102],[],[499],{"id":500,"createTime":501,"updateTime":502,"relativeEntities":503,"slug":504,"properties":505,"entityType":98,"verifyStatus":25,"verifyTime":509,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":222,"url":26,"parentIds":510,"statistic":511},"8b6e349b-0daf-4895-9c3f-85f30f1bfd42","2023-07-31T12:55:58.430+00:00","2026-06-19T02:30:07.899+00:00",[],"Tr%C6%B0%E1%BB%9Dng-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Khoa-h%E1%BB%8Dc-X%C3%A3-h%E1%BB%99i-v%C3%A0-Nh%C3%A2n-v%C4%83n-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-H%C3%A0-N%E1%BB%99i",{"title":506},{"EN":507,"VI":508},"VNU University of Social Sciences and Humanities","Trường Đại học Khoa học Xã hội và Nhân văn, Đại học Quốc gia Hà Nội","2023-08-02T15:28:49.057+00:00",[],{"impactFactor":36,"impactFactorByYear":512,"i10Index":59,"i10IndexLast5Year":115,"totalPublication":514,"totalPublicationByYear":515,"totalCitation":518,"totalCitationByYear":519,"totalCitationPerPublication":520,"totalCitationPerPublicationByYear":521,"hindexLast5Year":162,"hindex":162},{"2016":229,"2017":230,"2018":229,"2021":230,"2022":58,"2023":513,"2024":38},0.15,365,{"2013":115,"2014":158,"2015":125,"2016":252,"2017":44,"2018":516,"2019":286,"2020":396,"2021":259,"2022":517,"2023":396,"2024":115,"2025":59,"2026":115},21,42,169,{"2015":283,"2016":135,"2017":52,"2018":50,"2019":298,"2020":53,"2021":359,"2022":115,"2023":115},0.46,{"2015":266,"2016":57,"2017":57,"2018":522,"2019":523,"2020":524,"2021":368,"2022":229,"2023":39},0.38,0.32,0.37,[],"http:\u002F\u002Fjournal.ussh.vnu.edu.vn\u002Findex.php\u002Fvjossh","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F2b8d7b12-2d20-4777-be98-077f44f03c69\u002F0bd0751202944a4b4165b482e6e623e4.png",{"impactFactor":36,"impactFactorByYear":529,"i10Index":162,"i10IndexLast5Year":115,"totalPublication":530,"totalPublicationByYear":531,"totalCitation":537,"totalCitationByYear":538,"totalCitationPerPublication":343,"totalCitationPerPublicationByYear":540,"hindexLast5Year":135,"hindex":135},{"2016":341,"2017":39,"2018":229,"2019":38,"2020":110,"2021":231,"2022":231,"2023":341,"2024":39},764,{"2015":255,"2016":245,"2017":532,"2018":259,"2019":533,"2020":534,"2021":535,"2022":536,"2023":534,"2024":254,"2025":50},111,106,68,92,89,265,{"2015":539,"2016":241,"2017":168,"2018":51,"2019":349,"2020":260,"2021":244,"2022":298,"2023":114},46,{"2015":541,"2016":523,"2017":524,"2018":290,"2019":542,"2020":522,"2021":523,"2022":57,"2023":39},1.48,0.63,{"id":544,"createTime":545,"updateTime":546,"relativeEntities":547,"slug":548,"properties":549,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":558,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":50,"subjectFields":559,"manageAffiliations":560,"indexDatabases":561,"url":562,"thumbnailPath":563,"statistic":564,"gsStatistic":26,"type":26,"analyzePriority":26},"6ec01bd0-15c0-469a-86ac-41339076ae0a","2023-08-10T07:08:33.153+00:00","2026-01-31T21:19:06.362+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Da-li%E1%BB%85u-h%E1%BB%8Dc-Vi%E1%BB%87t-Nam",{"country":550,"issn":551,"introduce":553,"title":555},{"VOID":15},{"VOID":552},"18594824",{"VI":554},"{\"ops\":[{\"insert\":\"Tạp chí “Da liễu học Việt Nam” (Tiếng Anh: Vietnamese Journal of Dermatology and Venereology) thuộc Hội Da liễu Việt Nam, xuất bản 4 số mỗi năm bằng tiếng Việt hoặc tiếng Anh.\\nTạp chí Da liễu học Việt Nam hoạt động với mục đích, tôn chỉ là phổ biến, trao đổi thông tin trong lĩnh vực chuyên ngành da liễu; đăng tải các công trình nghiên cứu khoa học; chuyển giao công nghệ - kinh tế và khoa học kỹ thuật liên quan đến lĩnh vực da liễu.\\nPhạm vi của tạp chí là tất cả các bài báo khoa học, bài tổng quan, giới thiệu ca lâm sàng, … có liên quan tới chuyên ngành da liễu trong và ngoài nước. Tạp chí công bố các công trình nghiên cứu liên quan đến mô hình bệnh tật, các phương pháp chẩn đoán, điều trị, dự phòng và phục hồi chức năng các bệnh thuộc chuyên ngành da liễu. Ngoài ra, tạp chí còn đăng tải các bài tổng quan, cập nhật thông tin, kiến thức, hướng dẫn chẩn đoán, điều trị trong chuyên ngành da liễu trong nước và quốc tế; đăng tải các bài ca lâm sàng đặc biệt trong chuyên ngành da liễu.\\nTạp chí Da liễu học Việt Nam được biết tới là một tạp chí chuyên ngành có uy tín trong lĩnh vực da liễu. Các bài báo về nghiên cứu khoa học đăng trong Tạp chí được bình duyệt một cách nghiêm ngặt bởi ít nhất 2 chuyên gia. Hội đồng biên tập tạp chí bao gồm các nhà khoa học có uy tín (Giáo sư, Phó Giáo sư, Tiến sĩ, Bác sĩ…) trong chuyên ngành da liễu nhằm đảm bảo chất lượng và tính khách quan, khoa học cho các bài viết đăng trên Tạp chí.\\n\"}]}",{"EN":556,"VI":557},"Vietnamese Journal of Dermatology and Venereology","Tạp chí Da liễu học Việt Nam","Admin Import",[],[],[],"https:\u002F\u002Fvjdv.vn\u002Findex.php\u002Fvjdv","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F6ec01bd0-15c0-469a-86ac-41339076ae0a\u002F3cbc81720e58429dc7b1c4d7ab1935ca.jpg",{"impactFactor":36,"impactFactorByYear":565,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":566,"totalPublicationByYear":567,"totalCitation":116,"totalCitationByYear":570,"totalCitationPerPublication":109,"totalCitationPerPublicationByYear":571,"hindexLast5Year":115,"hindex":115},{"2023":38,"2024":230},182,{"2022":568,"2023":45,"2024":569},69,56,{"2022":52,"2023":115},{"2022":40,"2023":229},{"id":573,"createTime":574,"updateTime":575,"relativeEntities":576,"slug":577,"properties":578,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"syncStatus":28,"languages":587,"translateLanguages":26,"viewCount":283,"subjectFields":588,"manageAffiliations":589,"indexDatabases":647,"url":648,"thumbnailPath":649,"statistic":650,"gsStatistic":26,"type":26,"analyzePriority":26},"19221551-7519-47ff-a892-331d1139c64b","2023-09-12T07:03:05.744+00:00","2026-01-24T20:54:40.144+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Khoa-h%E1%BB%8Dc-S%E1%BB%A9c-kho%E1%BA%BB-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":579,"issn":580,"introduce":582,"title":584},{"VOID":15},{"VOID":581},"27349446",{"EN":583},"{\"ops\":[{\"attributes\":{\"bold\":true},\"insert\":\"1. History\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Science and Technology Development Journal\"},{\"insert\":\" (STDJ) (ISSN 2734-9446), Vietnam National University - Ho Chi Minh City (VNU-HCM) was established in 1997. And the first issue was published in January 1998 with ISSN 1859-0128. Since then, STDJ has become the most important scientific forum of scientists from VNU-HCM as well as other universities. The magazine has undergone 20 years of development and has become a bridge for scientific exchanges, as well as enriching reference materials for the faculty, doctoral students, students of VNU-HCM in particular and other universities, institutes...\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Science and Technology Development Journal - Health Sciences (STDJ-HS) is a subjournal of Science and Technology Development Journal since 2020.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\" \"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"2. Focus and Scope\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Publishing articles with contents on healthcare, research projects in the field of health, advanced directions in health education and management. Therefore, STDJ-HS will accept articles from doctors, administrators, teachers, researchers, graduate students and fellows. The authors will be responsible for the accuracy of the data, opinions, opinions and material cited in the article.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Facilitating the exchange of scientific and technological information and act as a bridge between theory and practice in the community of educators, scientists, managers, policy makers and enterprises in and out of the country.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}",{"EN":585,"VI":586},"VNUHCM JOURNAL OF HEALTH SCIENCES","Tạp chí Khoa học Sức khoẻ Đại học Quốc gia Thành phố Hồ Chí Minh",[101,102],[],[590],{"id":591,"createTime":592,"updateTime":593,"relativeEntities":594,"slug":595,"properties":596,"entityType":98,"verifyStatus":25,"verifyTime":606,"verifyNote":26,"syncStatus":28,"languages":607,"translateLanguages":26,"viewCount":608,"url":609,"parentIds":610,"statistic":611},"fc4c2560-868c-4677-acb1-8686bef88727","2023-06-26T04:48:23.774+00:00","2026-06-19T01:46:17.248+00:00",[],"%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":597,"title":598,"abbreviation":601,"address":603},{"VOID":15},{"EN":599,"VI":600},"Vietnam National University Ho Chi Minh City","Đại học Quốc gia Thành phố Hồ Chí Minh",{"VOID":602},"VNUHCM",{"VI":604,"EN":605},"khu phố 6, Phường Linh Trung, Thành phố Thủ Đức, Thành phố Hồ Chí Minh, Việt Nam","Quarter 6, Linh Trung Ward, Thu Duc City, Ho Chi Minh City, Vietnam","2023-08-16T14:13:07.134+00:00",[101,102],45,"https:\u002F\u002Fvnuhcm.edu.vn\u002F",[],{"impactFactor":36,"impactFactorByYear":612,"i10Index":285,"i10IndexLast5Year":51,"totalPublication":613,"totalPublicationByYear":614,"totalCitation":624,"totalCitationByYear":625,"totalCitationPerPublication":634,"totalCitationPerPublicationByYear":635,"hindexLast5Year":124,"hindex":124},{"2014":36,"2015":38,"2016":109,"2017":39,"2018":229,"2019":38,"2020":110,"2021":171,"2022":110,"2023":110,"2024":171,"2025":229},3708,{"2005":115,"2006":115,"2007":115,"2008":135,"2009":111,"2010":53,"2011":52,"2012":568,"2013":615,"2014":351,"2015":616,"2016":469,"2017":617,"2018":127,"2019":618,"2020":619,"2021":620,"2022":621,"2023":622,"2024":623,"2025":159,"2026":50},164,266,177,226,603,931,314,246,74,2399,{"2006":115,"2008":50,"2010":162,"2011":242,"2012":222,"2013":43,"2014":626,"2015":627,"2016":628,"2017":629,"2018":258,"2019":630,"2020":631,"2021":632,"2022":633,"2023":353,"2024":115},250,124,157,162,152,385,559,128,0.65,{"2006":115,"2008":636,"2010":637,"2011":638,"2012":639,"2013":522,"2014":640,"2015":641,"2016":642,"2017":643,"2018":644,"2019":642,"2020":645,"2021":292,"2022":646,"2023":522,"2024":38},1.33,0.45,2.22,0.39,1.35,0.47,0.67,0.92,0.73,0.64,0.41,[],"http:\u002F\u002Fstdjhs.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjhs","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F19221551-7519-47ff-a892-331d1139c64b\u002F2e10768b7d1e380c36a25ed0c714dd7e.png",{"impactFactor":36,"impactFactorByYear":651,"i10Index":36,"i10IndexLast5Year":36,"totalPublication":652,"totalPublicationByYear":653,"totalCitation":516,"totalCitationByYear":654,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":655,"hindexLast5Year":59,"hindex":59},{"2022":57,"2023":108,"2024":39},79,{"2020":116,"2021":240,"2022":239,"2023":52,"2024":162,"2025":162},{"2020":59,"2021":51,"2022":59},{"2020":443,"2021":387,"2022":54},{"code":657,"data":658,"meta":26},"SUCCESS",{"id":659,"createTime":660,"updateTime":661,"relativeEntities":662,"slug":663,"properties":664,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":669,"manageAffiliations":670,"indexDatabases":671,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},"bd8dbcaf-92b7-4bfa-812f-108df8aaee16","2023-11-24T15:24:38.698+00:00","2025-11-21T09:53:21.832+00:00",[],"Methods-in-Oceanography",{"issn":665,"title":667},{"VOID":666},"22111220",{"EN":668},"Methods in Oceanography",[],[],[672],{"id":673,"indexDatabase":674,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},"5acd327b-cb73-411c-9f68-a020dbba6b2b",{"id":675,"createTime":676,"updateTime":677,"relativeEntities":678,"label":679,"description":681,"key":683,"publicationTags":684,"standard":26},"3c7051d4-eb7d-4c57-a56b-36fc74c5d1e9","2023-05-22T09:57:18.509+00:00","2025-11-21T10:07:52.274+00:00",[],{"EN":680,"VI":680},"Scopus - Elsevier",{"EN":680,"VI":682},"Cơ sở dữ liệu Scopus thuộc Elsevier","scopus",[685],"SCOPUS","https:\u002F\u002Fwww.scopus.com\u002Fsourceid\u002F21100218141","2012-2016","SCOPUS__Q1",{"meta":690,"data":692},{"total":691},"35",[693,836,901,1004,1053,1171,1282,1478,1561,1689],{"id":694,"createTime":695,"updateTime":695,"relativeEntities":696,"slug":697,"properties":698,"entityType":709,"verifyStatus":25,"verifyTime":710,"verifyNote":711,"syncStatus":28,"languages":712,"translateLanguages":26,"viewCount":36,"primaryUrl":713,"fullTextUrl":26,"authors":714,"publicationType":753,"publisherRelationship":754,"citationCount":397,"citationInfo":774,"publishDate":776,"publishYear":777,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":778,"isForceReanalyzing":835},"5cc5fcc5-d0da-4150-a42a-a2ebaa6009b8","2024-11-29T06:57:09.755+00:00",[],"A-low-cost-easy-to-build-portable-and-universal-autosampler-for-liquids",{"mag":699,"keywords":701,"openalex":702,"abstract":704,"title":705,"doi":707},{"VOID":700},"2072377096",{},{"VOID":703},"W2072377096",{},{"EN":706},"A low cost, easy to build, portable, and universal autosampler for liquids",{"VOID":708},"10.1016\u002Fj.mio.2014.06.001","PUBLICATION","2024-11-29T06:57:09.753+00:00","Auto Verify",[102],"https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002FS2211122014000255",[715,736],{"id":716,"sortIndex":36,"researcher":26,"roles":717,"affiliations":718,"properties":729},"35468b80-5b73-4e36-8547-488fd3a46620",[],[719],{"id":720,"sortIndex":36,"affiliation":721,"properties":26},"751fe4d0-5965-411a-8efa-ddcaff1be78c",{"id":722,"createTime":723,"updateTime":723,"relativeEntities":724,"slug":725,"properties":726,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"5dd56750-220d-44e5-a6c2-e938fa2c6f7b","2024-11-29T06:57:09.887+00:00",[],"Centre-for-Coastal-Biogeochemistry-Research-Southern-Cross-University-PO-Box-157-Lismore-2480-NSW-Australia",{"title":727},{"EN":728},"Centre for Coastal Biogeochemistry Research, Southern Cross University, PO Box 157, Lismore, 2480, NSW, Australia",{"openalex":730,"orcid":732,"title":734},{"VOID":731},"A5003293649",{"VOID":733},"https:\u002F\u002Forcid.org\u002F0000-0002-4360-9911",{"EN":735},"Matheus C. Carvalho",{"id":737,"sortIndex":115,"researcher":26,"roles":738,"affiliations":739,"properties":746},"976d432a-8c5d-4181-a22f-ca9b09775eb7",[],[740],{"id":741,"sortIndex":36,"affiliation":742,"properties":26},"24585d6b-9444-4393-9599-f54099ba145e",{"id":722,"createTime":723,"updateTime":723,"relativeEntities":743,"slug":725,"properties":744,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":745},{"EN":728},{"openalex":747,"orcid":749,"title":751},{"VOID":748},"A5077040357",{"VOID":750},"https:\u002F\u002Forcid.org\u002F0000-0001-5502-0680",{"EN":752},"Bradley D. Eyre","ARTICLE",{"url":26,"publisher":755,"properties":769},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":756,"slug":663,"properties":757,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":760,"manageAffiliations":761,"indexDatabases":762,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":758,"title":759},{"VOID":666},{"EN":668},[],[],[763],{"id":673,"indexDatabase":764,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":765,"label":766,"description":767,"key":683,"publicationTags":768,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":770,"pages":772},{"VOID":771},"8",{"VOID":773},"23-32",{"total":397,"publishYear":26,"statisticByYear":775},{"2015":135,"2016":158,"2017":59,"2018":162,"2019":114,"2020":59,"2021":111,"2022":115,"2023":114,"2024":114},"2013-12-01",2013,[779,783,786,790,794,798,802,805,809,812,816,819,823,827,831],{"id":26,"text":780,"url":26,"identifiers":781},"Anzalone, 2013, Open-source colorimeter, Sensors, 13, 5338, 10.3390\u002Fs130405338",{"doi":782},"10.3390\u002Fs130405338",{"id":26,"text":784,"url":26,"identifiers":785},"APHA, AWWA, WEF, 1996. Total organic carbon. Standard methods for Examination of water and waste water, 5.19–15.25.",{},{"id":26,"text":787,"url":26,"identifiers":788},"Bradshaw, 1988, High precision measurements of alkalinity and total carbon dioxide in seawater by potentiometric titration — 1. Presence of unknown protolyte(s)?, Marine Chem., 23, 69, 10.1016\u002F0304-4203(88)90023-0",{"doi":789},"10.1016\u002F0304-4203(88)90023-0",{"id":26,"text":791,"url":26,"identifiers":792},"Carvalho, 2013, Integration of analytical instruments with computer ​scripting, J. Lab. Automat., 18, 328, 10.1177\u002F2211068213476288",{"doi":793},"10.1177\u002F2211068213476288",{"id":26,"text":795,"url":26,"identifiers":796},"Gross, 2014, Evaluation of 3D printing and its potential impact on biotechnology and the chemical sciences, Anal. Chem., 86, 3240, 10.1021\u002Fac403397r",{"doi":797},"10.1021\u002Fac403397r",{"id":26,"text":799,"url":26,"identifiers":800},"Pearce, 2014, Cut costs with open-source hardware, Nature, 505, 618, 10.1038\u002F505618d",{"doi":801},"10.1038\u002F505618d",{"id":26,"text":803,"url":26,"identifiers":804},"Pearce, 2014",{},{"id":26,"text":806,"url":26,"identifiers":807},"Pearce, 2012, Building research equipment with free, open-source hardware, Science, 337, 1303, 10.1126\u002Fscience.1228183",{"doi":808},"10.1126\u002Fscience.1228183",{"id":26,"text":810,"url":26,"identifiers":811},"Shimadzu, 2010",{},{"id":26,"text":813,"url":26,"identifiers":814},"St-Jean, 2003, Automated quantitative and isotopic (13C) analysis of dissolved inorganic carbon and dissolved organic carbon in continuous-flow using a total carbon analyser, Rapid Commun. Mass Spectrom., 17, 419, 10.1002\u002Frcm.926",{"doi":815},"10.1002\u002Frcm.926",{"id":26,"text":817,"url":26,"identifiers":818},"Stumm, 1981",{},{"id":26,"text":820,"url":26,"identifiers":821},"Symes, 2012, Integrated 3D-printed reactionware for chemical synthesis and analysis, Nature Chem., 4, 349, 10.1038\u002Fnchem.1313",{"doi":822},"10.1038\u002Fnchem.1313",{"id":26,"text":824,"url":26,"identifiers":825},"van Geldern, 2013, Stable carbon isotope analysis of dissolved inorganic carbon (DIC) and dissolved organic carbon (DOC) in natural waters–Results from first worldwide proficiency test, Rapid Commun. Mass Spectrom., 27, 2099, 10.1002\u002Frcm.6665",{"doi":826},"10.1002\u002Frcm.6665",{"id":26,"text":828,"url":26,"identifiers":829},"Williams, 1992, Measurement of dissolved organic carbon and nitrogen in natural waters, Oceanography, 5, 107, 10.5670\u002Foceanog.1992.17",{"doi":830},"10.5670\u002Foceanog.1992.17",{"id":26,"text":832,"url":26,"identifiers":833},"Zhang, 2013, Open-source 3D-printable optics equipment, PLoS_One, 8, e59840, 10.1371\u002Fjournal.pone.0059840",{"doi":834},"10.1371\u002Fjournal.pone.0059840",false,{"id":837,"createTime":838,"updateTime":838,"relativeEntities":839,"slug":26,"properties":840,"entityType":709,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":847,"fullTextUrl":26,"authors":848,"publicationType":753,"publisherRelationship":879,"citationCount":26,"citationInfo":26,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"ffc7a564-9ad8-4ecb-beea-e2baf644be78","2024-01-26T10:27:06.756+00:00",[],{"references":841,"title":843,"doi":845},{"VOID":842},"Aanderaa Instruments, 2003\nAanderaa Instruments, 2012\nBittig, 2014, Time response of oxygen optodes on profiling platforms and its dependence on flow speed and temperature, Limnol. Oceanogr. Methods, 12, 617, 10.4319\u002Flom.2014.12.617\nBittig, 2015, Pressure response of aanderaa and sea-bird oxygen optodes, J. Atmos. Ocean. Technol., 32, 2305, 10.1175\u002FJTECH-D-15-0108.1\nBittig, 2015, Tackling oxygen optode drift: Near-surface and in-air oxygen optode measurements on a float provide an accurate in-situ reference, J. Atmos. Ocean. Technol., 32, 1536, 10.1175\u002FJTECH-D-14-00162.1\nBoyer, 1999, Variability of dissolved oxygen, percent oxygen saturation, and apparent oxygen utilization in the Atlantic and Pacific Oceans, Deep-Sea Res. I, 46, 1593, 10.1016\u002FS0967-0637(99)00021-7\nBushinsky, 2016, Accurate oxygen measurements on modified Argo floats using in situ air calibrations, Limnol. Oceanogr. Methods, 10.1002\u002Flom3.10107\nD’Asaro, 2013, Calibration and stability of oxygen sensors on autonomous floats, J. Atmos. Ocean. Technol., 30, 1896, 10.1175\u002FJTECH-D-12-00222.1\nDemas, 1999, Oxygen sensors based on luminescence quenching, Anal. Chem., 71, 793A, 10.1021\u002Fac9908546\nEmerson, 1987, Oxygen cycles and biological new production in surface waters of the subarctic Pacific Ocean, J. Geophys. Res., 92, 6535, 10.1029\u002FJC092iC06p06535\nFiedler, 2013, In situ CO2 and O2 measurements on a profiling float, J. Atmos. Ocean. Technol., 30, 112, 10.1175\u002FJTECH-D-12-00043.1\nGarcía, 1992, Oxygen solubility in sea- water: Better fitting equations, Limnol. Oceanogr., 37, 1307, 10.4319\u002Flo.1992.37.6.1307\nGarcía, 2010, vol. 70, 344\nJenkins, 1985, oxygen cycling and primary production in the Sargasso Sea, J. Mar. Res., 43, 465, 10.1357\u002F002224085788438702\nJohnson, 2009\nJohnson, 2016, Air oxygen calibration of oxygen optodes on a profiling float array, J. Atmos. Ocean. Technol., 32, 2160, 10.1175\u002FJTECH-D-15-0101.1\nKobayashi, 2006, Negative bias of dissolved oxygen measurements by profiling floats, Oceanogr. Japan, 15, 479\nKörtzinger, 2005, High quality oxygen measurements from profiling floats: A promising new technique, J. Atmos. Ocean. Technol., 22, 302, 10.1175\u002FJTECH1701.1\nMcNeil, 2014, A calibration equation for oxygen optodes based on physical properties of the sensing foil, Limnol. Oceanogr. Methods, 12, 139, 10.4319\u002Flom.2014.12.139\nNajjar, 1997, Analysis of the mean annual cycle of the dissolved oxygen anomaly in the World Ocean, J. Mar. Res., 55, 117, 10.1357\u002F0022240973224481\nSwift, 2007\nTakeshita, 2013, A climatology- based quality control procedure for profiling float oxygen data, J. Geophys. Res.: Oceans, 118, 5640, 10.1002\u002Fjgrc.20399\nUchida, 2008, In situ calibration of optode-based oxygen sensors, J. Atmos. Ocean. Technol., 25, 2271, 10.1175\u002F2008JTECHO549.1",{"EN":844},"In situ phase-domain calibration of oxygen Optodes on profiling floats",{"VOID":846},"10.1016\u002Fj.mio.2016.09.007","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122016300019",[849,867],{"id":850,"sortIndex":115,"researcher":26,"roles":851,"affiliations":853,"properties":864},"8f0e03c1-0d11-416f-b305-7087210037b2",[852],"AUTHOR",[854],{"id":26,"sortIndex":36,"affiliation":855,"properties":26},{"id":856,"createTime":857,"updateTime":858,"relativeEntities":859,"slug":860,"properties":861,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"b3ada6c5-383b-432c-85d4-a7332b9ccda4","2024-01-26T10:27:06.780+00:00","2025-01-28T13:22:43.863+00:00",[],"University-of-Washington-United-States",{"title":862},{"VI":863},"University of Washington, United States",{"title":865},{"VI":866},"Stephen C. Riser",{"id":868,"sortIndex":36,"researcher":26,"roles":869,"affiliations":870,"properties":876},"2c0263b5-b418-4bde-a93b-f95fbb9f6144",[852],[871],{"id":26,"sortIndex":36,"affiliation":872,"properties":26},{"id":856,"createTime":857,"updateTime":858,"relativeEntities":873,"slug":860,"properties":874,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":875},{"VI":863},{"title":877},{"VI":878},"Robert Drucker",{"url":847,"publisher":880,"properties":894},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":881,"slug":663,"properties":882,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":885,"manageAffiliations":886,"indexDatabases":887,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":883,"title":884},{"VOID":666},{"EN":668},[],[],[888],{"id":673,"indexDatabase":889,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":890,"label":891,"description":892,"key":683,"publicationTags":893,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":895,"pages":897},{"VOID":896},"17",{"VOID":898},"296-318","2016-12-01",2016,{"id":902,"createTime":903,"updateTime":904,"relativeEntities":905,"slug":906,"properties":907,"entityType":709,"verifyStatus":25,"verifyTime":904,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":914,"fullTextUrl":26,"authors":915,"publicationType":753,"publisherRelationship":982,"citationCount":26,"citationInfo":26,"publishDate":1002,"publishYear":1003,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"6a7c4bb3-71e2-433a-8a99-e509f7c85bf6","2024-02-06T05:45:59.976+00:00","2024-12-18T01:03:34.270+00:00",[],"Weather-and-climate-induced-spatial-variability-of-surface-suspended-particulate-matter-concentration-in-the-North-Sea-and-the-English-Channel",{"references":908,"title":910,"doi":912},{"VOID":909},"Baeye, 2011, Sediment mobility in response to tidal and wind-driven flows along the Belgian inner shelf, southern North Sea, Ocean Dyn., 61, 611, 10.1007\u002Fs10236-010-0370-7\nBartholdy, J., Anthony, D., 1998. Tidal dynamics and seasonal dependent import and export of fine-grained sediment through a backbarrier tidal channel of the Danish Wadden Sea. In: Alexander, C.R., Davis, R.A., Henry, V.J. (Eds.), SEPM Spec. Publ., vol. 61. pp. 43–52.\nBenniston, 2007, Future extreme events in European climate: an exploration of regional climate model projections, Clim. Change, 81, 71, 10.1007\u002Fs10584-006-9226-z\nChang, 2006, The role of particle aggregation\u002Fdisaggregation in muddy sediment dynamics and seasonal sediment turnover in a back-barrier tidal basin, East Frisian Wadden Sea, southern North Sea, Mar. Geol., 235, 49, 10.1016\u002Fj.margeo.2006.10.004\nDemuzere, 2009, An analysis of present and future ECHAM5 pressure fields using a classification of circulation patterns, Int. J. Climatol., 29, 1796, 10.1002\u002Fjoc.1821\nDobrynin, 2010, Effect of waves and currents on the dynamics and seasonal variations of suspended particulate matter in the North Sea, J. Mar. Syst., 82, 1, 10.1016\u002Fj.jmarsys.2010.02.012\nDoxaran, 2002, Spectral signature of highly turbid waters application with SPOT data to quantify suspended particulate matter concentrations, Remote Sens. Environ., 81, 149, 10.1016\u002FS0034-4257(01)00341-8\nEisma, 1981, Supply and deposition of suspended matter in the North Sea, 415\nEleveld, 2008, Remotely sensed seasonality in the spatial distribution of sea-surface suspended particulate matter in the southern North Sea, Estuarine Coastal Shelf Sci., 80, 103, 10.1016\u002Fj.ecss.2008.07.015\nFettweis, 2012, Hydro-meteorological influences and multimodal suspended particle size distributions in the Belgian nearshore area (southern North Sea), Geo-Mar. Lett., 32, 123, 10.1007\u002Fs00367-011-0266-7\nFettweis, 2011, Evaluation of in situ and remote sensing sampling methods for SPM concentrations, Belgian continental shelf (southern North Sea), Ocean Dyn., 61, 157, 10.1007\u002Fs10236-010-0310-6\nFettweis, 2007, An estimate of the suspended particulate matter (SPM) transport in the southern North Sea using SeaWiFS images, in situ measurements and numerical model results, Cont. Shelf Res., 27, 1568, 10.1016\u002Fj.csr.2007.01.017\nGerritsen, 2001, Integrated modelling of suspended matter in the North Sea, Estuarine Coastal Shelf Sci., 53, 581, 10.1006\u002Fecss.2000.0633\nHolt, 2010, The potential impacts of climate change on the hydrography of the Northwest European continental shelf, Prog. Oceanogr., 86, 361, 10.1016\u002Fj.pocean.2010.05.003\nHouziaux, 2011, Historic (1900) seafloor composition in the Belgian–Dutch part of the North Sea: a reconstruction based on calibrated visual sediment descriptions, Cont. Shelf Res., 31, 1043, 10.1016\u002Fj.csr.2011.03.010\nHurrell, 1995, Decadal trends in the North Atlantic Oscillation: regional temperatures and precipitation, Science, 269, 676, 10.1126\u002Fscience.269.5224.676\nHuthnance, 1991, Physical oceanography of the North Sea, Ocean Shoreline Manag., 16, 199, 10.1016\u002F0951-8312(91)90005-M\nJaiser, 2012, Impact of sea ice cover changes on the Northern Hemisphere atmospheric winter circulation, Tellus A, 64, 11595, 10.3402\u002Ftellusa.v64i0.11595\nJenkinson, A.F., Collison, F.P., 1977. An initial climatology of gales over the North Sea. Synoptic Climatology. Branch Memorandum 62. Meteorological Office, London.\nJones, 1993, A comparison of Lamb circulation types with an objective classification scheme, Int. J. Climatol., 13, 655, 10.1002\u002Fjoc.3370130606\nLamb, 1972, vol. 116\nLettmann, 2009, Modeling the impact of wind and waves on suspended particulate matter fluxes in the East Frisian Wadden Sea (southern North Sea), Ocean Dyn., 59, 239, 10.1007\u002Fs10236-009-0194-5\nLuyten, P.J., Jones, J.E., Proctor, R., Tabor, A., Tett, P., Wild-Allen, K., 1999. COHERENS a coupled hydrodynamical–ecological model for regional and shelf seas: user documentation. MUMM. Brussels, p. 911.\nMcCandliss, 2002, Dynamics of suspended particles in coastal waters (southern North Sea) during a spring bloom, J. Sea Res., 47, 285, 10.1016\u002FS1385-1101(02)00123-5\nMill, 2003, Smartbuoy: a marine environmental monitoring buoy with a difference, vol. 19, 311\nNechad, 2010, Calibration and validation of a generic multisensor algorithm for mapping of total suspended matter in turbid waters, Remote Sens. Environ., 114, 854, 10.1016\u002Fj.rse.2009.11.022\nOSPAR, Quality Status Report 2000, 2000. Region II—greater North Sea. OSPAR Commission, London, p. 136.\nPatt, F.S., Barnes, R.A., Eplee, R.E., Franz, B.A., Robinson, W.D., 2003. Algorithm updates for the fourth SeaWiFS data reprocessing. NASA Technical Memorandum 22.\nPetoukhov, 2010, A link between reduced Barents–Kara sea ice and cold winter extremes over northern continents, J. Geophys. Res., 115, D21111, 10.1029\u002F2009JD013568\nPietrzak, 2011, Mechanisms controlling the intra-annual mesoscale variability of SST and SPM in the southern North Sea, Cont. Shelf Res., 31, 594, 10.1016\u002Fj.csr.2010.12.014\nPleskachevsky, 2005, Synergy of satellite remote sensing and numerical modeling for monitoring of suspended particulate matter, Ocean Dyn., 55, 2, 10.1007\u002Fs10236-004-0101-z\nRivier, 2012, Observed vs. predicted variability in non-algal suspended particulate matter concentration in the English Channel in relation to tides and waves, Geo-Mar. Lett., 32, 139, 10.1007\u002Fs00367-011-0271-x\nSchrum, 1997, Thermohaline stratification and instabilities at tidal mixing fronts: results of an eddy resolving model for the German Bight, Cont. Shelf Res., 17, 689, 10.1016\u002FS0278-4343(96)00051-9\nSchwierz, 2006, Challenges posed by and approaches to the study of seasonal-to-decadal climate variability, Clim. Change, 79, 31, 10.1007\u002Fs10584-006-9076-8\nSiegismund, 2001, Decadal changes in the wind forcing over the North Sea, Clim. Res., 18, 39, 10.3354\u002Fcr018039\nSmith, 1997, Global sea floor topography from satellite altimetry and ship depth soundings, Science, 277, 1956, 10.1126\u002Fscience.277.5334.1956\nStanev, 2009, Bed shear stress in the southern North Sea as an important driver for suspended sediment dynamics, Ocean Dyn., 59, 183, 10.1007\u002Fs10236-008-0171-4\nUllmann, 2010, Changes in atmospheric circulation over the North Atlantic and sea-surge variations along the Belgian coast during the twentieth century, Int. J. Climatol., 30, 558, 10.1002\u002Fjoc.1904\nVan den Eynde, 2012, Evolution of the marine storminess in the Belgian part of the North Sea, Nat. Hazards Earth Syst. Sci., 12, 305, 10.5194\u002Fnhess-12-305-2012\nVelegrakis, 1999, Sources, sinks and resuspension of suspended particulate matter in the eastern English Channel, Cont. Shelf Res., 19, 1933, 10.1016\u002FS0278-4343(99)00047-3\nWinterwerp, 2006, Stratification effects by fine suspended sediment at low, medium and very high concentrations, J. Geophys. Res., 111, C05012, 10.1029\u002F2005JC003019\nZuo, 1989, Recent sediment deposition rates in the Oyster ground North Sea, Neth. J. Sea Res., 23, 263, 10.1016\u002F0077-7579(89)90047-1",{"EN":911},"Weather and climate induced spatial variability of surface suspended particulate matter concentration in the North Sea and the English Channel",{"VOID":913},"10.1016\u002Fj.mio.2012.11.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122012000187",[916,931,943,955,970],{"id":917,"sortIndex":114,"researcher":26,"roles":918,"affiliations":919,"properties":928},"11db4001-173f-4c6c-b12e-951209917b20",[852],[920],{"id":26,"sortIndex":36,"affiliation":921,"properties":26},{"id":922,"createTime":923,"updateTime":923,"relativeEntities":924,"slug":26,"properties":925,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"8ac1d763-37d6-487c-8a40-bbe0c84e1e88","2024-02-06T05:46:00.018+00:00",[],{"title":926},{"VI":927},"Management Unit of the North Sea Mathematical Models (MUMM), Royal Belgian Institute of Natural Sciences, Gulledelle 100, 1200 Brussels, Belgium",{"title":929},{"VI":930},"Matthias Baeye",{"id":932,"sortIndex":36,"researcher":26,"roles":933,"affiliations":934,"properties":940},"dcb660a9-0290-4c65-9ed0-0c8ca38e5fdf",[852],[935],{"id":26,"sortIndex":36,"affiliation":936,"properties":26},{"id":922,"createTime":923,"updateTime":923,"relativeEntities":937,"slug":26,"properties":938,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":939},{"VI":927},{"title":941},{"VI":942},"Michael Fettweis",{"id":944,"sortIndex":59,"researcher":26,"roles":945,"affiliations":946,"properties":952},"0381c5a2-874d-47ac-a624-971cbe6629ba",[852],[947],{"id":26,"sortIndex":36,"affiliation":948,"properties":26},{"id":922,"createTime":923,"updateTime":923,"relativeEntities":949,"slug":26,"properties":950,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":951},{"VI":927},{"title":953},{"VI":954},"Bouchra Nechad",{"id":956,"sortIndex":115,"researcher":26,"roles":957,"affiliations":958,"properties":967},"87485367-bb0f-4cae-a1e2-53aee9459c3d",[852],[959],{"id":26,"sortIndex":36,"affiliation":960,"properties":26},{"id":961,"createTime":962,"updateTime":962,"relativeEntities":963,"slug":26,"properties":964,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"5208b254-9272-4c31-8991-8357e5c9cf95","2024-02-06T05:46:00.067+00:00",[],{"title":965},{"VI":966},"Katholieke Universiteit Leuven, Hydraulics Laboratory, Kasteelpark Arenberg 40, 3001 Heverlee, Belgium",{"title":968},{"VI":969},"Jaak Monbaliu",{"id":971,"sortIndex":111,"researcher":26,"roles":972,"affiliations":973,"properties":979},"88b62720-ca93-43bd-ba1c-90c07f26bd87",[852],[974],{"id":26,"sortIndex":36,"affiliation":975,"properties":26},{"id":922,"createTime":923,"updateTime":923,"relativeEntities":976,"slug":26,"properties":977,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":978},{"VI":927},{"title":980},{"VI":981},"Dries Van den Eynde",{"url":914,"publisher":983,"properties":997},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":984,"slug":663,"properties":985,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":988,"manageAffiliations":989,"indexDatabases":990,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":986,"title":987},{"VOID":666},{"EN":668},[],[],[991],{"id":673,"indexDatabase":992,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":993,"label":994,"description":995,"key":683,"publicationTags":996,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":998,"pages":1000},{"VOID":999},"3",{"VOID":1001},"25-39","2012-09-01",2012,{"id":1005,"createTime":1006,"updateTime":1007,"relativeEntities":1008,"slug":1009,"properties":1010,"entityType":709,"verifyStatus":25,"verifyTime":1007,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1017,"fullTextUrl":26,"authors":1018,"publicationType":753,"publisherRelationship":1034,"citationCount":26,"citationInfo":26,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"5ee513d5-2571-4f6c-8ab6-2a0bce5eac1e","2024-02-12T08:24:13.167+00:00","2024-12-18T04:14:12.582+00:00",[],"Applications-of-3D-printing-technologies-in-oceanography",{"references":1011,"title":1013,"doi":1015},{"VOID":1012},"Abdelaal, 2013, Review of rapid prototyping techniques for tissue engineering scaffolds fabrication, 33\nAlbright, 2016, Reversal of ocean acidification enhances net coral reef calcification, Nature, 531, 362, 10.1038\u002Fnature17155\nAli, 2014, Auxetic oesophageal stents: structure and mechanical properties, J. Mater. Sci. Mater. Med., 25, 527, 10.1007\u002Fs10856-013-5067-2\nAllotta, 2015, Design of a modular propulsion system for MARTA AUV, 1\nAnell, 2015\nBarngrover, 2011, The stingray AUV: A small and cost-effective solution for ecological monitoring, 1\nBartol, 2005, Body-induced vortical flows: a common mechanism for self-corrective trimming control in boxfishes, J. Exp. Biol., 208, 327, 10.1242\u002Fjeb.01356\nBartol, 2003, Hydrodynamic stability of swimming in ostraciid fishes: role of the carapace in the smooth trunkfish Lactophrys triqueter (Teleostei: Ostraciidae), J. Exp. Biol., 206, 725, 10.1242\u002Fjeb.00137\nBartol, 2002, Flow patterns around the carapaces of rigid-bodied, multi-propulsor boxfishes (Teleostei: Ostraciidae), Integr. Comp. Biol., 42, 971, 10.1093\u002Ficb\u002F42.5.971\nBartolini, F., Costanzi, R., Monni, N., Ridolfi, A., Vettori, G., Giardi, F., Lupi, E., Mazzuoli, E., Montagni, M., Paolucci, L., Allotta, B., 2012. SAUC-E 2012 - UNIFI Team - Turtle vehicle. In: Presented at the Proceedings of SAUC-e (Student Autonomous Underwater Vehicle Challenge - Europe) 2012, La Spezia, Italy.\nBean, Q., Cooper, K., Werkheiser, N., 2015. 3D Printing in Zero-G Experiment, In Space Manufacturing (LPS, 4).\nBegolo, 2014, The pumping lid: investigating multi-material 3D printing for equipment-free, programmable generation of positive and negative pressures for microfluidic applications, Lab Chip, 14, 4616, 10.1039\u002FC4LC00910J\nBejgarn, 2015, Toxicity of leachate from weathering plastics: An exploratory screening study with Nitocra spinipes, Chemosphere, 132, 114, 10.1016\u002Fj.chemosphere.2015.03.010\nBennett, 2015, Autonomous vehicles for remote sample collection: Enabling marine research, 1\nBennett, 2015, Autonomous vehicles for remote sample collection in difficult conditions: Enabling remote sample collection by marine biologists, 1\nCampbell, T., Williams, C., Ivanova, O., Garrett, B., 2011. Could 3D printing change the world? Technologies, Potential, and Implications of Additive Manufacturing (Strategic Foresight Initiative), Atlantic Council. Washington, DC.\nCesaretti, 2014, Building components for an outpost on the Lunar soil by means of a novel 3D printing technology, Acta Astronaut., 93, 430, 10.1016\u002Fj.actaastro.2013.07.034\nChae, 2015, Emerging applications of bedside 3D printing in plastic surgery, Front. Surg., 2, 10.3389\u002Ffsurg.2015.00025\nChia, 2015, Recent advances in 3D printing of biomaterials, J. Biol. Eng., 9, 1, 10.1186\u002Fs13036-015-0001-4\nCooper, 2015, Sintering and additive manufacturing: The new paradigm for the jewellery manufacturer, Johnson Matthey Technol. Rev., 59, 233, 10.1595\u002F205651315X688523\nCressey, 2015, Crucial ocean-acidification models come up short, Nature, 524, 18, 10.1038\u002F524018a\nCronskär, 2013, Production of customized hip stem prostheses-a comparison between conventional machining and electron beam melting (EBM), Rapid Prototyp. J., 19, 365, 10.1108\u002FRPJ-07-2011-0067\nDeng, 2005, Biomimetic micro underwater vehicle with oscillating fin propulsion: system design and force measurement, 3312\nD’Epagnier, 2007, An open source parametric propeller design tool, 1\nDo, 2015, 3D printing of scaffolds for tissue regeneration applications, Adv. Healthc. Mater., 4, 1742, 10.1002\u002Fadhm.201500168\nDUS Architects, 2015. 3D Print Canal House, http:\u002F\u002F3dprintcanalhouse.com\u002F.\nFarina, 2015, Biomechanics: Boxed up and ready to go, Nature, 517, 274, 10.1038\u002F517274a\nFernandez Peter, 2014, “Through the looking glass: envisioning new library technologies” the possibilities and challenges of 3-D printing, Libr. Hi Tech News, 31\nFrazier, 2014, Metal additive manufacturing: a review, J. Mater. Eng. Perform., 23, 1917, 10.1007\u002Fs11665-014-0958-z\nGalloway, 2016, Marine microplastics spell big problems for future generations, Proc. Natl. Acad. Sci., 113, 2331, 10.1073\u002Fpnas.1600715113\nGardiner, J., 2011. Exploring the emerging design territory of construction 3D printing-project led architectural research (Doctoral Thesis). RMIT University, Melbourne, Australia, https:\u002F\u002Fresearchbank.rmit.edu.au\u002Fview\u002Frmit:160277.\nGerringer, M., 2014. Investigation of a Subcutaneous Gelatinous Tissue in the Hadal Snailfish Proximate Chemical Composition, Comparative Video Analysis, and Robotic Modelling, https:\u002F\u002Fdigital.lib.washington.edu\u002Fresearchworks\u002Fhandle\u002F1773\u002F34616.\nGodoi, 2016, 3d printing technologies applied for food design: Status and prospects, J. Food Eng., 179, 44, 10.1016\u002Fj.jfoodeng.2016.01.025\nGoto, K., Sugimoto, M., Yasue, H., Shiotsubo, K., Tomoda, A., Jinno, K., Fujimori, F., 2014. Design and concept of the unmanned surface vehicle “Horizon Blue”. In: Presented at the Maritime RobotX Challenge 2014, RobotX, Singapore, pp. 1–10.\nGross, 2014, Evaluation of 3D printing and its potential impact on biotechnology and the chemical sciences, Anal. Chem., 86, 3240, 10.1021\u002Fac403397r\nGrunewald, S.J., 2015. Oyster Growers Use 3D Printed Structures to Help Restore New England’s Reef Ecosystem. 3DPrint.com.\nHardin, 2015, Microfluidic printheads for multimaterial 3D printing of viscoelastic inks, Adv. Mater., 27, 3279, 10.1002\u002Fadma.201500222\nHe, 2016, Developments of 3D printing microfluidics and applications in chemistry and biology: a review, Electroanalysis, 28, 1658, 10.1002\u002Felan.201600043\nHenke, 2013, Wood based bulk material in 3D printing processes for applications in construction, Eur. J. Wood Wood Prod., 71, 139, 10.1007\u002Fs00107-012-0658-z\nHowell, 2014, Self-replenishing vascularized fouling-release surfaces, ACS Appl. Mater. Interfaces, 6, 13299, 10.1021\u002Fam503150y\nHunt, 2014, Selection of steels suitable for additive layer manufacturing, Ironmaking Steelmaking, 41, 254, 10.1179\u002F0301923314Z.000000000269\nHuynh, 2015, Visualizing the fluid flow through the complex skeletonized respiratory structures of a blastoid echinoderm, Palaeontol. Electron., 18, 1\nIshida, 2015, Three-dimensional imaging of the Jurassic radiolarian Protunuma? Ochiensis Matsuoka: an experimental study using high-resolution X-ray micro-computed tomography, Vol. Jurassica, 13, 77\nJiang, 2015, A preliminary study of 3D printing on rock mechanics, Rock Mech. Rock Eng., 48, 1041, 10.1007\u002Fs00603-014-0612-y\nKariz, 2016, Use of wood powder and adhesive as a mixture for 3D printing, Eur. J. Wood Wood Prod., 74, 123, 10.1007\u002Fs00107-015-0987-9\nKietzmann, 2015, Disruptions, decisions, and destinations: Enter the age of 3-D printing and additive manufacturing, Bus. Horiz., 58, 209, 10.1016\u002Fj.bushor.2014.11.005\nKodati, 2006, Towards the body shape design of a hydrodynamically stable robotic boxfish, 5412\nKodati, 2006, Experimental studies on the hydrodynamics of a robotic ostraciiform tail fin, 5418\nKodati, 2007, Micro autonomous robotic ostraciiform (MARCO): design and fabrication, 960\nKodati, 2008, Microautonomous robotic ostraciiform (MARCO): Hydrodynamics, design, and fabrication, IEEE Trans. Robot., 24, 105, 10.1109\u002FTRO.2008.915446\nKokkinis, 2015, Multimaterial magnetically assisted 3D printing of composite materials, Nature Commun., 6, 10.1038\u002Fncomms9643\nKolesky, 2014, 3D bioprinting of vascularized, heterogeneous cell-laden tissue constructs, Adv. Mater., 26, 3124, 10.1002\u002Fadma.201305506\nKreiger, M.A., MacAllister, B.A., Wilhoit, J.M., Case, M.P., 2015. The current state of 3D printing for use in construction. In: Presented at the Conference on Autonomous and Robotic Construction of Infrastructure, pp. 149–158.\nKruszyński, 2009, Tangible props for scientific visualization: concept, requirements, application, Virtual Real., 13, 235, 10.1007\u002Fs10055-009-0126-1\nKumta, 2015, A novel 3D template for mandible and maxilla reconstruction: Rapid prototyping using stereolithography, Indian J. Plast. Surg., 48, 263, 10.4103\u002F0970-0358.173123\nMacdonald, 2016, Assessment of biocompatibility of 3D printed photopolymers using zebrafish embryo toxicity assays, Lab Chip, 16, 291, 10.1039\u002FC5LC01374G\nMatsuoka, 2012, Exact number of pore frames and their configuration in the Mesozoic radiolarian Pantanellium: An application of X-ray micro-CT and layered manufacturing technology to micropaleontology, Mar. Micropaleontol., 88, 36, 10.1016\u002Fj.marmicro.2012.02.005\nMehrabani, 2014, Bio-inspired design of ice-retardant devices based on benthic marine invertebrates: the effect of surface texture, PeerJ, 2, e588, 10.7717\u002Fpeerj.588\nMironov, 2003, Organ printing: computer-aided jet-based 3D tissue engineering, TRENDS Biotechnol., 21, 157, 10.1016\u002FS0167-7799(03)00033-7\nMostafavi, 2015, Informed design to robotic production systems; developing robotic 3D printing system for informed material deposition\nNorzagaray-López, 2015, Low calcification rates and calcium carbonate production in Porites panamensis at its northernmost geographic distribution, Mar. Ecol., 36, 1244, 10.1111\u002Fmaec.12227\nO’Neill, 2015, 3D print a home on Mars, New Sci., 226, 27, 10.1016\u002FS0262-4079(15)30462-0\nOskui, 2016, Assessing and reducing the toxicity of 3D-printed parts, Environ. Sci. Technol. Lett., 3, 1, 10.1021\u002Facs.estlett.5b00249\nPardo, 2013, Underwater city: 3D Printed reef restores Bahrain’s marine life, Prod. Lifecycle Rep.\nPerrot, 2015, Structural built-up of cement-based materials used for 3D-printing extrusion techniques, Mater. Struct., 1\nPorter, 2015, Why the seahorse tail is square, Science, 349, aaa6683, 10.1126\u002Fscience.aaa6683\nRafi, 2013, Microstructures and mechanical properties of Ti6Al4V parts fabricated by selective laser melting and electron beam melting, J. Mater. Eng. Perform., 22, 3872, 10.1007\u002Fs11665-013-0658-0\nReady, 2014, Multi-material 3D printing, 120\nReep, P., Weddle, R., Sagoo, K., 2015. Electomagnetically Active Elements, Alloys, Compounds and Compositions for Firearms Fabricated by Additive Manufacturing. US Patent 20,150,279,525.\nRengier, 2010, 3D printing based on imaging data: review of medical applications, Int. J. Comput. Assist. Radiol. Surg., 5, 335, 10.1007\u002Fs11548-010-0476-x\nSher, 2015, Review of 3D food printing, Temes Disseny, 104\nShirazi, 2016, A review on powder-based additive manufacturing for tissue engineering: selective laser sintering and inkjet 3D printing, Sci. Technol. Adv. Mater., 16, 33502, 10.1088\u002F1468-6996\u002F16\u002F3\u002F033502\nSitthi-Amorn, 2015, MultiFab: a machine vision assisted platform for multi-material 3D printing, ACM Trans. Graph. (TOG), 34, 129, 10.1145\u002F2766962\nSkavicus, C., Ditsche, P., 2014. Comparison of drag forces acting on different benthic body shapes in marine molluscs, https:\u002F\u002Fdlib.lib.washington.edu\u002Fresearchworks\u002Fhandle\u002F1773\u002F27236.\nSOI, 2012. Worlds First 3D Printed Reef, http:\u002F\u002Fwww.sustainableoceans.com.au\u002Fimages\u002Fstories\u002FMedia_releases\u002FSOI_Worlds_FIRST_3D_printed_reef_MEDIA_RELEASE_2012.pdf.\nStansbury, 2016, 3D printing with polymers: Challenges among expanding options and opportunities, Dent. Mater., 32, 54, 10.1016\u002Fj.dental.2015.09.018\nStanton, 2015, Applications of three-dimensional (3D) printing for microswimmers and bio-hybrid robotics, Lab Chip, 15, 1634, 10.1039\u002FC5LC90019K\nStuart, H.S., Wang, S., Gardineer, B., Christensen, D.L., Aukes, D.M., Cutkosky, M., 2014. A compliant underactuated hand with suction flow for underwater mobile manipulation. In: 2014 IEEE International Conference on Presented at the Robotics and Automation, ICRA, Vol. no, p. 6691.\nSun, 2015, A review on 3D printing for customized food fabrication, Procedia Manuf., 1, 308, 10.1016\u002Fj.promfg.2015.09.057\nSun, 2015, An overview of 3D printing technologies for food fabrication, Food Bioprocess Technol., 8, 1605, 10.1007\u002Fs11947-015-1528-6\nSussarellu, 2016, Oyster reproduction is affected by exposure to polystyrene microplastics, Proc. Natl. Acad. Sci., 113, 2430, 10.1073\u002Fpnas.1519019113\nTiwary, 2015, Morphogenesis and mechanostabilization of complex natural and 3D printed shapes, Sci. Adv., 1, e1400052, 10.1126\u002Fsciadv.1400052\nTumbleston, 2015, Continuous liquid interface production of 3D objects, Science, 347, 1349, 10.1126\u002Fscience.aaa2397\nVan Wassenbergh, 2015, Boxfish swimming paradox resolved: forces by the flow of water around the body promote manoeuvrability, J. R. Soc. Interface, 12, 20141146, 10.1098\u002Frsif.2014.1146\nVentola, 2014, Medical applications for 3D Printing: current and projected uses, Pharmacol. Ther., 39, 704\nWaran, 2014, Utility of multimaterial 3D printers in creating models with pathological entities to enhance the training experience of neurosurgeons: Technical note, J. Neurosurg., 120, 489, 10.3171\u002F2013.11.JNS131066\nWen, 2014, Biomimetic shark skin: design, fabrication and hydrodynamic function, J. Exp. Biol., 217, 1656, 10.1242\u002Fjeb.097097\nWu, 2015, Review: Polymeric-based 3D printing for tissue engineering, J. Med. Biol. Eng., 35, 285, 10.1007\u002Fs40846-015-0038-3\nYossef, M., Chen, A., 2015. Applicability and limitations of 3D printing for civil structures. In: Presented at the Conference on Autonomous and Robotic Construction of Infrastructure, pp. 237–246.\nYue, 2014, Bio-inspired robot launching system for a mother–son underwater manipulation task, 174\nZiaeefard, 2015, GUPPIE, underwater 3D printed robot a game changer in control design education, 2789",{"EN":1014},"Applications of 3D printing technologies in oceanography",{"VOID":1016},"10.1016\u002Fj.mio.2016.08.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122016300093",[1019],{"id":1020,"sortIndex":36,"researcher":26,"roles":1021,"affiliations":1022,"properties":1031},"23ecc26b-21f0-4e38-a289-f635d5833be6",[852],[1023],{"id":26,"sortIndex":36,"affiliation":1024,"properties":26},{"id":1025,"createTime":1026,"updateTime":1026,"relativeEntities":1027,"slug":26,"properties":1028,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"df05c5cb-1ade-4630-a132-2ce659b4ea5d","2024-02-12T08:24:13.185+00:00",[],{"title":1029},{"VI":1030},"Faculty of Innovative Design and Technology, Universiti Sultan Zainal Abidin, Gong Badak Campus, 21300 Kuala Terengganu, Malaysia",{"title":1032},{"VI":1033},"Javeed Shaikh Mohammed",{"url":1017,"publisher":1035,"properties":1049},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1036,"slug":663,"properties":1037,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1040,"manageAffiliations":1041,"indexDatabases":1042,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1038,"title":1039},{"VOID":666},{"EN":668},[],[],[1043],{"id":673,"indexDatabase":1044,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1045,"label":1046,"description":1047,"key":683,"publicationTags":1048,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1050,"pages":1051},{"VOID":896},{"VOID":1052},"97-117",{"id":1054,"createTime":1055,"updateTime":1056,"relativeEntities":1057,"slug":1058,"properties":1059,"entityType":709,"verifyStatus":25,"verifyTime":1056,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1066,"fullTextUrl":26,"authors":1067,"publicationType":753,"publisherRelationship":1149,"citationCount":26,"citationInfo":26,"publishDate":1169,"publishYear":1170,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"bb7b4b63-7a94-4f43-a48c-12887961ecc1","2024-02-13T22:29:36.028+00:00","2025-01-30T04:46:48.864+00:00",[],"A-novel-platform-to-study-the-effect-of-small-scale-turbulent-density-fluctuations-on-underwater-imaging-in-the-ocean",{"references":1060,"title":1062,"doi":1064},{"VOID":1061},"Bluteau, 2011, Estimating turbulent kinetic energy dissipation using the inertial subrange method in environmental flows, Limnol. Oceanogr. Methods, 9, 302, 10.4319\u002Flom.2011.9.302\nBogucki, 2004, Light scattering on oceanic turbulence, Appl. Opt., 43, 5662, 10.1364\u002FAO.43.005662\nBogucki, 1998, Comparison of near-forward light scattering on oceanic turbulence and particles, Appl. Opt., 37, 4669, 10.1364\u002FAO.37.004669\nBogucki, 2012, Experimental evidence of the Kraichnan scalar spectrum at high Reynolds numbers, J. Phys. Oceanogr., 42, 1717, 10.1175\u002FJPO-D-11-0214.1\nDalgleish, 2013, In situ laser sensing of mixed layer turbulence, Proc. SPIE, 8724, 10.1117\u002F12.2019193\nDuntley, 1963, Light in the sea, J. Opt. Soc. Amer., 53, 214, 10.1364\u002FJOSA.53.000214\nHou, 2009, A simple underwater imaging model, Opt. Lett., 34, 2688, 10.1364\u002FOL.34.002688\nHou, 2012, Bahamas optical turbulence exercise (BOTEX): preliminary results, Proc. SPIE, 8372\nHou, 2007, Why does the secchi disk disappear? An imaging perspective, Opt. Express, 15, 2791, 10.1364\u002FOE.15.002791\nHou, 2012, Optical turbulence on underwater image degradation in natural environments, Appl. Opt., 51, 2678, 10.1364\u002FAO.51.002678\nLesieur, 2008\nMoum, 2009, Mixing measurements on an equatorial ocean mooring, J. Atmos. Ocean. Technol., 26, 317, 10.1175\u002F2008JTECHO617.1\nNash, 1999, Estimating salinity variance dissipation rate from conductivity microstructure measurements, J. Atmos. Ocean. Technol., 16, 263, 10.1175\u002F1520-0426(1999)016\u003C0263:ESVDRF>2.0.CO;2\nOakey, 1982, Determination of the rate of dissipation of turbulent energy from simultaneous temperature and velocity shear microstructure measurements, J. Phys. Oceanogr., 12, 256, 10.1175\u002F1520-0485(1982)012\u003C0256:DOTROD>2.0.CO;2\nPreisendorfer, 1986, Secchi disk science: visual optics of natural waters, Limnol. Oceanogr., 31, 909, 10.4319\u002Flo.1986.31.5.0909\nRoggemann, 1996\nRuddick, 2000, Maximum likelihood spectral fitting: the batchelor spectrum, J. Atmos. Ocean. Technol., 17, 1541, 10.1175\u002F1520-0426(2000)017\u003C1541:MLSFTB>2.0.CO;2\nRusello, 2009, 1\nRusello, P., Cowen, E., 2011. Turbulent dissipation estimates from pulse coherent doppler instruments. In: 10th IEEE\u002FOES Current, Waves and Turbulence Measurements, CWTM, pp. 167–172.\nTennekes, 1972\nWang, 2004, Image quality assessment: from error visibility to structural similarity, IEEE Trans. Image Process., 13, 600, 10.1109\u002FTIP.2003.819861\nWolk, 2002, A new free-fall profiler for measuring biophysical microstructure, J. Atmos. Oceanic Technol., 19, 780, 10.1175\u002F1520-0426(2002)019\u003C0780:ANFFPF>2.0.CO;2\nWoods, 2011, Quantifying turbulence microstructure for improvement of underwater imaging, Proc. SPIE, 8030, 10.1117\u002F12.887607",{"EN":1063},"A novel platform to study the effect of small-scale turbulent density fluctuations on underwater imaging in the ocean",{"VOID":1065},"10.1016\u002Fj.mio.2015.01.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS221112201500002X",[1068,1083,1095,1110,1122,1137],{"id":1069,"sortIndex":162,"researcher":26,"roles":1070,"affiliations":1071,"properties":1080},"de8fc018-7dda-4e33-b51c-7b5bacb4654f",[852],[1072],{"id":26,"sortIndex":36,"affiliation":1073,"properties":26},{"id":1074,"createTime":1075,"updateTime":1075,"relativeEntities":1076,"slug":26,"properties":1077,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"e0e7288c-a38d-461e-a933-8668a0b9ec0a","2024-02-13T22:29:36.086+00:00",[],{"title":1078},{"VI":1079},"Naval Research Laboratory, 1009 Balch Blvd, Stennis Space Center, MS 39529, USA",{"title":1081},{"VI":1082},"Alan Weidemann",{"id":1084,"sortIndex":115,"researcher":26,"roles":1085,"affiliations":1086,"properties":1092},"ade6cb25-b6c0-4931-962c-692d63768445",[852],[1087],{"id":26,"sortIndex":36,"affiliation":1088,"properties":26},{"id":1074,"createTime":1075,"updateTime":1075,"relativeEntities":1089,"slug":26,"properties":1090,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1091},{"VI":1079},{"title":1093},{"VI":1094},"Weilin Hou",{"id":1096,"sortIndex":114,"researcher":26,"roles":1097,"affiliations":1098,"properties":1107},"c67f2d9f-53a4-418d-811f-2e008f5ea94d",[852],[1099],{"id":26,"sortIndex":36,"affiliation":1100,"properties":26},{"id":1101,"createTime":1102,"updateTime":1102,"relativeEntities":1103,"slug":26,"properties":1104,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"296041d8-ccea-4540-8902-c3df20e5c258","2024-02-13T22:29:36.073+00:00",[],{"title":1105},{"VI":1106},"SPEC Inc., Boulder, CO, USA",{"title":1108},{"VI":1109},"Sarah Woods",{"id":1111,"sortIndex":111,"researcher":26,"roles":1112,"affiliations":1113,"properties":1119},"ce8021f3-79f3-479b-b784-daa7e983c884",[852],[1114],{"id":26,"sortIndex":36,"affiliation":1115,"properties":26},{"id":1074,"createTime":1075,"updateTime":1075,"relativeEntities":1116,"slug":26,"properties":1117,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1118},{"VI":1079},{"title":1120},{"VI":1121},"Ewa Jarosz",{"id":1123,"sortIndex":36,"researcher":26,"roles":1124,"affiliations":1125,"properties":1134},"9ddaa74e-c766-4b24-8aef-85b9df354704",[852],[1126],{"id":26,"sortIndex":36,"affiliation":1127,"properties":26},{"id":1128,"createTime":1129,"updateTime":1129,"relativeEntities":1130,"slug":26,"properties":1131,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"7061aeaf-19b0-44b3-a4b7-a3cbe1c723c1","2024-02-13T22:29:36.049+00:00",[],{"title":1132},{"VI":1133},"National Research Council Research Associate at Naval Research Laboratory, 1009 Balch Blvd, Stennis Space Center, MS 39529, USA",{"title":1135},{"VI":1136},"Silvia Matt",{"id":1138,"sortIndex":59,"researcher":26,"roles":1139,"affiliations":1140,"properties":1146},"d84b4100-3f3b-4dcd-93ec-09a67108c5fc",[852],[1141],{"id":26,"sortIndex":36,"affiliation":1142,"properties":26},{"id":1074,"createTime":1075,"updateTime":1075,"relativeEntities":1143,"slug":26,"properties":1144,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1145},{"VI":1079},{"title":1147},{"VI":1148},"Wesley Goode",{"url":1066,"publisher":1150,"properties":1164},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1151,"slug":663,"properties":1152,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1155,"manageAffiliations":1156,"indexDatabases":1157,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1153,"title":1154},{"VOID":666},{"EN":668},[],[],[1158],{"id":673,"indexDatabase":1159,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1160,"label":1161,"description":1162,"key":683,"publicationTags":1163,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1165,"pages":1167},{"VOID":1166},"11",{"VOID":1168},"39-58","2014-12-01",2014,{"id":1172,"createTime":1173,"updateTime":1174,"relativeEntities":1175,"slug":1176,"properties":1177,"entityType":709,"verifyStatus":25,"verifyTime":1174,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1184,"fullTextUrl":26,"authors":1185,"publicationType":753,"publisherRelationship":1261,"citationCount":26,"citationInfo":26,"publishDate":1281,"publishYear":1170,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"ef39d9a3-5825-4059-a599-b40d6a3fa7e8","2023-12-07T22:24:37.099+00:00","2025-01-31T19:07:48.220+00:00",[],"Reprint-of-A-preliminary-design-of-a-movable-laboratory-for-hadal-trenches",{"references":1178,"title":1180,"doi":1182},{"VOID":1179},"Barry, 2009, Revisiting the challenger deep using the ROV Kaiko, Mar. Technol. Soc. J., 43, 77, 10.4031\u002FMTSJ.43.5.27\nBelyaev, 1989, 385\nBowen, 2009, The Nereus hybrid underwater robotic vehicle, Underwater Technol., 28, 79, 10.3723\u002Fut.28.079\nBrady, H.B., 1884. Report on the foraminifera dredged by H.M.S. Challenger during the years 1873–1876. Report of the scientific results of the voyage of H.M.S. Challenger, 1873–1876. Zoology, 9:1-814.\nBruun, 1956, The abyssal fauna: its ecology, distribution and origin, Nature, 177, 1105, 10.1038\u002F1771105a0\nBruun, 1956, 296\nCui, 2013, Development of the JIAOLONG deep manned submersible, Mar. Technol. Soc. J., 47, 37, 10.4031\u002FMTSJ.47.3.2\nFletcher, 2009, Journey to the challenger deep: 50 years later with the Nereus hybrid remotely operated vehicle, Mar. Technol. Soc. J., 43, 65, 10.4031\u002FMTSJ.43.5.26\nHardy, 2013, Hadal landers: the DEEPSEA CHALLENGE ocean trench free vehicles [C]\nHardy, 2009, Pressure testing: best practices, Mar. Technol. Soc. J., 43, 123, 10.4031\u002FMTSJ.43.5.18\nHawkes, 2009, The old arguments of manned versus unmanned systems are about to become irrelevant: new technologies are game changers [J], Mar. Technol. Soc. J., 43, 164, 10.4031\u002FMTSJ.43.5.21\nHessler, 1978, Scavenging amphipods from the floor of the Philippine trench, Deep-Sea Res., 25, 1029, 10.1016\u002F0146-6291(78)90585-4\nJamieson, 2011, Ecology of deep oceans: hadal trenches\nJamieson, 2011, Trench connection, Biol. Lett., 7, 641, 10.1098\u002Frsbl.2011.0231\nJamieson, 2010, Hadal trenches: the ecology of the deepest places on Earth, Trends Ecol. Evolut., 25, 190, 10.1016\u002Fj.tree.2009.09.009\nJamieson, 2009, HADEEP: free-falling landers to the deepest places on earth, Mar. Technol. Soc. J., 43, 151, 10.4031\u002FMTSJ.43.5.17\nJamieson, 2009, Liparid and Macrourid fishes of the hadal zone: in situ observations of activity and feeding behaviour, Proc. Roy. Soc. B, 276, 1037, 10.1098\u002Frspb.2008.1670\nJamieson, 2009, First findings of decapod crustacea in the hadal-zone, Deep-Sea Res. I, 56, 641, 10.1016\u002Fj.dsr.2008.11.003\nKemp, 2008, A new technique for periodic bait release at a deep-sea camera platform: first results from the Charlie–Gibbs fracture zone, mid-Atlantic Ridge, Deep-Sea Res. II, 55, 218, 10.1016\u002Fj.dsr2.2007.09.011\nKohnen, 2009, Human exploration of the deep seas: fifty years and the inspiration continues, Mar. Technol. Soc. J., 43, 42, 10.4031\u002FMTSJ.43.5.30\nKudo, 2008, Overseas trends in the development of human occupied deep submersibles and a proposal for Japan’s way to take, Quart. Rev., 26, 104\nLi, 2013, On resistance performance of three manned submersibles with full ocean depth\nMomma, H., Watanbe, M., Hashimoto, K., et al. 2004. Loss of the full ocean depth ROV Kaiko, part 1: ROV Kaiko, a review. In: Proceedings of the 14th International Offshore and Polar Engineering Conference, Vol. 2, pp. 191–193.\nMurashima, 2004, 7000 m class ROV KAIKO7000, vol. 2, 812\nNakajoh, H., Murashima, T., Aoki, T., Tukioka, S., 1998. 7000 m class expendable optical fiber cable ROV (UROV7K) system. In: Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering–OMAE-98, July. pp. 5–9, Lisbon, Portugal, OMAE.\n2004, 152\nPiccard, 1961\nTaylor, 2009, Project deepsearch: an innovative solution for accessing the oceans [J], Mar. Technol. Soc. J., 43, 169, 10.4031\u002FMTSJ.43.5.28\nTengberg, 1995, Benthic chamber and profiling landers in oceanography—a review of design, technical solutions and functioning, Prog. Oceanogr., 35, 253, 10.1016\u002F0079-6611(95)00009-6\n2009, vol. 84\nWatling, 2013, A proposed biogeography of the deep ocean floor, Prog. Oceanogr., 111, 91, 10.1016\u002Fj.pocean.2012.11.003\nWhitcomb, L.L., Howland, J.C., Smallwood, D.A., Yoerger, D.R., Thiel, T.E., 2003. A new control system for the next generation of US and UK deep submergence oceanographic ROVs. In: Proceedings of the 1st IFAC Workshop on Guidance and Control of Underwater Vehicles, GCUV ’03, pp. 137–142, April 9–11, 2003, Newport, South Wales, UK.\nWolff, 1960, The hadal community, an introduction, Deep-Sea Res., 6, 95\nYoshida, 2009, The ABISMO mud and water sampling ROV for surveys at 11,000 m depth, Mar. Technol. Soc. J., 43, 87, 10.4031\u002FMTSJ.43.5.31",{"EN":1181},"Reprint of A preliminary design of a movable laboratory for hadal trenches",{"VOID":1183},"10.1016\u002Fj.mio.2014.11.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122014000474",[1186,1201,1225,1237,1249],{"id":1187,"sortIndex":59,"researcher":26,"roles":1188,"affiliations":1189,"properties":1198},"776861e7-0277-44b7-8901-9134cfcf7034",[852],[1190],{"id":26,"sortIndex":36,"affiliation":1191,"properties":26},{"id":1192,"createTime":1193,"updateTime":1193,"relativeEntities":1194,"slug":26,"properties":1195,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"ab24a69f-3f39-473c-b988-7e56b9d84a9e","2023-12-07T22:24:37.180+00:00",[],{"title":1196},{"VI":1197},"Hadal Science and Technology Research Center (HAST), Shanghai Ocean University, No. 999 Hucheng Huan Road, Shanghai, 201306, China",{"title":1199},{"VI":1200},"Binbin Pan",{"id":1202,"sortIndex":36,"researcher":26,"roles":1203,"affiliations":1204,"properties":1222},"19c052db-e93d-4295-9f0b-de5f88cd4f5e",[852],[1205,1210],{"id":26,"sortIndex":36,"affiliation":1206,"properties":26},{"id":1192,"createTime":1193,"updateTime":1193,"relativeEntities":1207,"slug":26,"properties":1208,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1209},{"VI":1197},{"id":1211,"sortIndex":115,"affiliation":1212,"properties":1221},"a0e826b7-14cb-426f-ae3d-f384dc76aae8",{"id":1213,"createTime":1214,"updateTime":1215,"relativeEntities":1216,"slug":1217,"properties":1218,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"1f25518d-6d36-4056-9b3d-54aea7941b4b","2023-12-29T09:18:22.787+00:00","2024-11-26T20:37:22.290+00:00",[],"Nonlinear-Analysis-and-Applied-Mathematics-NAAM-Research-Group-Faculty-of-Science-King-Abdulaziz-University-Jeddah-21589-Saudi-Arabia",{"title":1219},{"VI":1220},"Nonlinear Analysis and Applied Mathematics (NAAM) Research Group, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia",{},{"title":1223},{"VI":1224},"Weicheng Cui",{"id":1226,"sortIndex":115,"researcher":26,"roles":1227,"affiliations":1228,"properties":1234},"0e692ac2-77b5-4d5f-8b0b-5c0caf610198",[852],[1229],{"id":26,"sortIndex":36,"affiliation":1230,"properties":26},{"id":1192,"createTime":1193,"updateTime":1193,"relativeEntities":1231,"slug":26,"properties":1232,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1233},{"VI":1197},{"title":1235},{"VI":1236},"Yong Hu",{"id":1238,"sortIndex":114,"researcher":26,"roles":1239,"affiliations":1240,"properties":1246},"70ab1c21-e478-4333-a05e-79bfd6ea6df7",[852],[1241],{"id":26,"sortIndex":36,"affiliation":1242,"properties":26},{"id":1192,"createTime":1193,"updateTime":1193,"relativeEntities":1243,"slug":26,"properties":1244,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1245},{"VI":1197},{"title":1247},{"VI":1248},"Wei Guo",{"id":1250,"sortIndex":111,"researcher":26,"roles":1251,"affiliations":1252,"properties":1258},"3406fc07-1c77-4e6d-91f5-b0fdca02c087",[852],[1253],{"id":26,"sortIndex":36,"affiliation":1254,"properties":26},{"id":1192,"createTime":1193,"updateTime":1193,"relativeEntities":1255,"slug":26,"properties":1256,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1257},{"VI":1197},{"title":1259},{"VI":1260},"Fang Wang",{"url":1184,"publisher":1262,"properties":1276},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1263,"slug":663,"properties":1264,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1267,"manageAffiliations":1268,"indexDatabases":1269,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1265,"title":1266},{"VOID":666},{"EN":668},[],[],[1270],{"id":673,"indexDatabase":1271,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1272,"label":1273,"description":1274,"key":683,"publicationTags":1275,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1277,"pages":1279},{"VOID":1278},"10",{"VOID":1280},"178-193","2014-09-01",{"id":1283,"createTime":1284,"updateTime":1285,"relativeEntities":1286,"slug":1287,"properties":1288,"entityType":709,"verifyStatus":25,"verifyTime":1285,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1295,"fullTextUrl":26,"authors":1296,"publicationType":753,"publisherRelationship":1459,"citationCount":26,"citationInfo":26,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"c84ae148-6342-4bf8-983d-75bafb9ad447","2024-02-05T11:55:20.308+00:00","2025-01-09T12:15:02.125+00:00",[],"Potential-for-an-underwater-glider-component-as-part-of-the-Global-Ocean-Observing-System",{"references":1289,"title":1291,"doi":1293},{"VOID":1290},"Abrahamsen, 2014, Sustaining observations in the polar oceans, Phil. Trans. R. Soc. A, 372, 2025, 10.1098\u002Frsta.2013.0337\nAinley, 2015, Trophic cascades in the western Ross Sea, Antarctica: revisited, Mar. Ecol. Prog. Ser., 534, 1, 10.3354\u002Fmeps11394\nAlbretsen, 2012, Climatic variability in the Skagerrak and coastal waters of Norway, ICES J. Mar. Sci., 69, 758, 10.1093\u002Ficesjms\u002Ffsr187\nAlford, 2012, Internal waves on the Washington continental shelf, Oceanography, 25, 66, 10.5670\u002Foceanog.2012.43\nAlvarez, 2013, Mapping sub-surface geostrophic currents from altimetry and a fleet of gliders, Deep Sea Res. I, 10.1016\u002Fj.dsr.2012.10.014\nAlvarez, 2012, Oceanographic field estimates from remote sensing and glider fleets, J. Atmos. Ocean. Technol., 29, 1657, 10.1175\u002FJTECH-D-12-00015.1\n1998, 32\nAsper, 2011, Using gliders to study a phytoplankton bloom in the Ross Sea, Antarctica, OCEANS, 19\nBaird, 2012, The southward transport of sub-mesoscale lenses of Bass Strait Water in the centre of anti-cyclonic mesoscale eddies, Geophys. Res. Lett., 39, L02603, 10.1029\u002F2011GL050643\nBaird, 2011, The effect of surface flooding on the physical–biogeochemical dynamics of a warm-core eddy off southeast Australia, Deep Sea Res., 58, 592, 10.1016\u002Fj.dsr2.2010.10.002\nBakker, 2012, Global data products help assess changes to the ocean carbon sink, Eos. Trans. Am. Geophys. Union, 93, 125, 10.1029\u002F2012EO120001\nBaumgartner, 2008, Diel periodicity in both sei whale vocalization rates and the vertical migration of their copepod prey observed from ocean gliders, Limnol. Oceanogr., 53, 2151\nBaumgartner, 2008, Low frequency vocalizations attributed to sei whales (Balaenoptera borealis), J. Acoust. Soc. Am., 124, 1339, 10.1121\u002F1.2945155\nBeaird, 2012, Dissipation of turbulent kinetic energy inferred from seagliders: An application to the eastern nordic seas overflows, J. Phys. Oceanogr., 42, 2268, 10.1175\u002FJPO-D-12-094.1\nBeaird, 2013, Overflow waters at the Iceland-Faroe ridge observed in multiyear seaglider surveys, J. Phys. Oceanogr., 43, 2334, 10.1175\u002FJPO-D-13-029.1\nBeszczynska-Möller, 2011, A synthesis of exchanges through the main oceanic gateways to the Arctic Ocean, Oceanography, 24, 82, 10.5670\u002Foceanog.2011.59\nBiddle, 2015, Ocean glider observations of iceberg-enhanced biological production in the northwestern Weddell Sea, Geophys. Res. Lett., 42, 459, 10.1002\u002F2014GL062850\nBoettger, 2015, Characterizing the semidiurnal internal tide off Tasmania using glider data, J. Geophys. Res. Oceans, 120, 3730, 10.1002\u002F2015JC010711\nBork, 2008, The legal regulation of floats and gliders—In quest of a new regime?, Ocean Dev. Int. law, 39, 298, 10.1080\u002F00908320802235338\nBosse, 2015, Spreading of Levantine intermediate waters by submesoscale coherent vortices in the northwestern Mediterranean Sea as observed with gliders, J. Geophys. Res. Oceans, 120, 1599, 10.1002\u002F2014JC010263\nBouffard, 2010, Coastal and mesoscale dynamics characterization using altimetry and gliders: a case study in the Balearic Sea, J. Geophys. Res., 115, C10029, 10.1029\u002F2009JC006087\nBouffard, 2012, Sub-surface small scale eddy dynamics from multi-sensor observations and modelling, Prog. Oceanogr., 106, 62, 10.1016\u002Fj.pocean.2012.06.007\nBourrin, 2015, Glider monitoring of shelf suspended particle dynamics and transport during storm and flooding conditions, Cont. Shelf Res., 109, 135, 10.1016\u002Fj.csr.2015.08.031\nBreivik, 2013, Advances in search and rescue at sea, Ocean Dyn., 63, 83, 10.1007\u002Fs10236-012-0581-1\nBriggs, 2011, High resolution observations of aggregate flux during a sub-polar North Atlantic spring bloom, Deep Sea Res. Part I, 58, 1031, 10.1016\u002Fj.dsr.2011.07.007\nBrito, 2014, Underwater glider reliability and implications for survey design, J. Atmos. Ocean. Technol., 31, 2858, 10.1175\u002FJTECH-D-13-00138.1\nBrown, 2012, Mapping the Mid-Atlantic cold pool evolution and variability with ocean gliders and numerical models, Oceans, 2012\nCastelao, 2010, Temperature, salinity, and density variability in the central Middle Atlantic Bight, J. Geophys. Res., 115, C10005, 10.1029\u002F2009JC006082\nCastelao, 2008, Seasonal evolution of hydrographic fields in the central Middle Atlantic Bight from glider observations, Geophys. Res. Lett., 10.1029\u002F2007GL032335\nChao, 2008, Synergistic applications of autonomous underwater vehicles and regional oceanmodeling system in coastal ocean forecasting, Limnol. Oceanogr., 53, 2251, 10.4319\u002Flo.2008.53.5_part_2.2251\nCole, 2012, The spatial distribution and annual cycle of upper ocean thermohaline structure, J. Geophys. Res., 10.1029\u002F2011JC007033\nCouvelard, 2008, Barotropic zonal jets induced by Islands in the Southwest Pacific, J. Phys. Oceanogr., 38, 2185, 10.1175\u002F2008JPO3903.1\nCronin, 2015, Estimating diffusivity from the mixed layer heat and salt balances in the North Pacific, J. Geophys. Res. Oceans, 120, 7346, 10.1002\u002F2015JC011010\nDavis, 2010, On the coastal-upwelling overturning cell, J. Mar. Res., 68, 369, 10.1357\u002F002224010794657173\nDavis, 2012, Gliders measure western boundary current transport from the South Pacific to the equator, J. Phys. Oceanogr., 42, 2001, 10.1175\u002FJPO-D-12-022.1\nDavis, 2008, Glider surveillance of physics and biology in the southern California Current System, Limnol. Oceanogr., 53, 2151, 10.4319\u002Flo.2008.53.5_part_2.2151\nde Madron, 2013, Interaction of dense shelf water cascading and open-sea convection in the northwestern Mediterranean during winter 2012, Geophys. Res. Lett., 40\nDobricic, 2008, An oceanographic three-dimensional variational data assimilation scheme, Ocean Modell., 22, 89, 10.1016\u002Fj.ocemod.2008.01.004\nDobricic, 2010, Impact of data assimilation of glider observations in the Ionian Sea (Eastern Mediterranean), Dyn. Atmos. Oceans, 50, 78, 10.1016\u002Fj.dynatmoce.2010.01.001\nDomingues, 2015, Upper ocean response to Hurricane Gonzalo (2014): Salinity effects revealed by targeted and sustained underwater glider observations, Geophys. Res. Lett., 42, 7131, 10.1002\u002F2015GL065378\nDurack, 2016, Keeping the lights on for global ocean salinity observation, Nat. Clim. Change, 6, 228, 10.1038\u002Fnclimate2946\nEvans, 2013, A regression modeling approach for studying carbonate system variability in the northern Gulf of Alaska, J. Geophys. Res. Oceans, 118, 476, 10.1029\u002F2012JC008246\nEvans, 2013, Impact of tropical instability waves on nutrient and chlorophyll distributions in the equatorial Pacific, Deep Sea Res. Part I, 56, 178, 10.1016\u002Fj.dsr.2008.08.008\nFan, 2013, Observations of Irminger Sea Anticyclonic Eddies, J. Phys. Oceanogr., 43, 805, 10.1175\u002FJPO-D-11-0155.1\nFarrar, 2015, Salinity and temperature balances at the SPURS central mooring during fall and winter, Oceanography, 28, 56, 10.5670\u002Foceanog.2015.06\nFedak, 2013, The impact of animal platforms on polar ocean observation, Deep-Sea Res. II, 88–89, 7, 10.1016\u002Fj.dsr2.2012.07.007\nFeely, R.C., Cosca, C., Alin, S., Lebon, G., 2012. Sea Surface and Atmospheric fCO2 measurements in the Pacific Ocean during VOS project line onboard the M\u002FS Natalie Schulte. Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, US Department of Energy, Oak Ridge, Tennessee. http:\u002F\u002Fdx.doi.org\u002F10.3334\u002FCDIAC\u002FOTG.VOS_NATALIE_SCHULTE_LINES, http:\u002F\u002Fcdiac.ornl.gov\u002Fftp\u002Foceans\u002FVOS_Natalie_Schulte_Lines\u002F.\nFer, 2014, Microstructure Measurements from an Underwater Glider in the Turbulent Faroe Bank Channel Overflow, J. Atmos. Ocean. Technol., 31, 1128, 10.1175\u002FJTECH-D-13-00221.1\nFrajka-Williams, 2011, Determining vertical water velocities from seaglider, J. Atmos. Ocean. Technol., 28, 1641, 10.1175\u002F2011JTECHO830.1\nFrajka-Williams, 2009, Physical controls and mesoscale variability in the Labrador Sea spring phytoplankton bloom observed by Seaglider, Deep Sea Res., 56, 2144, 10.1016\u002Fj.dsr.2009.07.008\nGangopadhyay, 2013, Multi-scale forecasting in the western north Atlantic: Sensitivity of model forecast skill to glider data assimilation, Cont. Shelf Res., 63, 159, 10.1016\u002Fj.csr.2012.09.013\nGarzoli, 2010, Progressing towards global sustained deep ocean observations\nGlenn, 2008, Glider observations of sediment resuspension in a Middle Atlantic Bight fall transition storm, Limnol. Oceanogr., 53, 2180, 10.4319\u002Flo.2008.53.5_part_2.2180\nGoni, 2010, The ship of opportunity program\nGourdeau, 2008, Zonal jets entering the Coral Sea, J. Phys. Oceanogr., 38, 714, 10.1175\u002F2007JPO3780.1\nGower, 2013, The Malaspina dragon: A newly-discovered pattern of the early spring bloom in the Strait of Georgia, British Columbia, Canada, ProgOceanogr, 115, 181\nGROOM. 2014. Deliverable 5.7. Report describing costs to build and operate the glider observatory infrastructure. Available from: http:\u002F\u002Fwww.groom-fp7.eu\u002Flib\u002Fexe\u002Ffetch.php?media=public:deliverables:groom_d5.7_cnrs.pdf.\nGROOM. 2015. Deliverable 5.2. Sensors for gliders: existing, under development, and future sensors. Available from: http:\u002F\u002Fwww.groom-fp7.eu\u002Flib\u002Fexe\u002Ffetch.php?media=public:deliverables:groom_d5.2_ucy_rev.pdf.\nGruber, 2010, Adding oxygen to Argo: Developing a global in situ observatory for ocean deoxygenation and biogeochemistry\nGuihen, 2014, An assessment of the use of ocean gliders to undertake acoustic measurements of zooplankton: the distribution and density of Antarctic krill (Euphausiasuperba) in the Weddell Sea, Limnol. Oceanogr.-Methods, 12, 373, 10.4319\u002Flom.2014.12.373\nGulev, 2010, Surface energy, CO2 fluxes and sea ice\nHäkkinen, 2008, Sea ice drift in the Arctic since the 1950s, Geophys. Res. Lett., 35, L19704, 10.1029\u002F2008GL034791\nHaley, 2009, Forecasting and Reanalysis in the Monterey Bay\u002FCalifornia Current Region for the Autonomous Ocean Sampling Network-II Experiment. Special issue on AOSN-II, Deep-Sea Res. II, 10.1016\u002Fj.dsr2.2008.08.010\nHátún, 2007, Buoyant eddies entering the Labrador Sea observed with gliders and altimetry, J. Phys. Oceanogr., 37, 2,838, 10.1175\u002F2007JPO3567.1\nHayes, 2016, Operational Assimilation of glider temperature and salinity in a mesoscale flow field: Eastern Mediterranean test case, Ocean Sci. Discuss., 10.5194\u002Fos-2016-43\nHayes, D., Hannides, A., Testor, P., Gildor, H., Zodiatis, G., Georgiou, G., 2014. Description of the Long-lived Subsurface Mesoscale Eddy South of Cyprus. 6th EGO Meeting 16–17 June, Kiel, Germany.\nHayes, D., Zodiatis, G., Konnaris, G., Hannides, A., Solovyov, D., Testor, P., 2011. Glider transects in the Levantine Sea: Characteristics of the warm core Cyprus eddy. Presented at the Oceans 2011 IEEE, IEEE, Santander, Spain, p. Paper PID1762407. http:\u002F\u002Fdx.doi.org\u002F10.1109\u002FOceans-Spain.2011.6003393.\nHernandez, 2014, SMOS salinity in the subtropical North Atlantic salinity maximum: 1. Comparison with Aquarius and in situ salinity, J. Geophys. Res. Oceans, 119, 8878, 10.1002\u002F2013JC009610\nHeslop, 2012, Autonomous underwater gliders monitoring variability at choke points in our ocean system: A case study in the Western Mediterranean Sea, Geophys. Res. Lett., 39, L20604, 10.1029\u002F2012GL053717\nHeywood, 2014, Ocean processes at the Antarctic continental slope, Philos. Trans. Roy. Soc. Ser. A, 372, 20130047, 10.1098\u002Frsta.2013.0047\nHill, 2010, The Australian integrated marine observing system: delivering data streams to address national and international research priorities, Mar. Technol. Soc. J., 44, 65, 10.4031\u002FMTSJ.44.6.13\nHodges, 2009, A thin layer of phytoplankton observed in the Philippine Sea with a synthetic moored array of autonomous gliders, J. Geophys. Res.-Oceans, 114, 10.1029\u002F2009JC005317\nHofmann, 2015, The operation of gliders under the international law of the sea, Ocean Dev. Int. Law, 46, 167, 10.1080\u002F00908320.2015.1053374\nHolliday, 2013, The extended Ellett line discoveries from 65 years of marine observations west of the UK, Oceanography, 26, 156, 10.5670\u002Foceanog.2013.17\nHood, 2010, Ship-based repeat hydrography: A strategy for a sustained global program\nHoughton, 2012, The GOOS at 20 years, the origin achievement and future development of the Global Climate Observing System, Weather, 67, 10.1002\u002Fwea.1964\nHoupert, 2014, Observations of the mixed layer, the seasonal thermocline and the upper-ocean heat storage rate to estimate the seasonal cycle of the net heat flux over the Mediterranean Sea, Prog. Oceanogr.\nHøydalsvik, 2013, Transport estimates of the Western Branch of the Norwegian Atlantic Current from glider surveys, Deep Sea Res. Part I, 79, 86, 10.1016\u002Fj.dsr.2013.05.005\nHristova, 2014, Mesoscale variability and its seasonality in the Solomon and Coral Seas, J. Geophys. Res.-Oceans, 119, 4669, 10.1002\u002F2013JC009741\nHydes, 2010, The way forward in developing and integrating ferrybox technologies\nIOC. 1997. Global Sea Level Observing System (GLOSS) implementation plan -1997. Intergovernmental Oceanographic Commission, Technical Series, No. 50, 91 & Annexes.\nJacox, 2015, The potential for improving remote primary productivity estimates through subsurface chlorophyll and irradiance measurement, Deep-Sea Res. II, 112, 107, 10.1016\u002Fj.dsr2.2013.12.008\nJohnston, 2015, Trapped diurnal internal tides, propagating semidiurnal internal tides, and mixing estimates in the California Current System from sustained glider observations, 2006–2012, Deep Sea Res. Part II, 112, 61, 10.1016\u002Fj.dsr2.2014.03.009\nJohnston, 2013, Internal tidal energy fluxes in the South China Sea from density and velocity measurements by gliders, J. Geophys. Res. Oceans, 118, 3939, 10.1002\u002Fjgrc.20311\nJohnston, 2015, Standing internal tides in the tasman sea observed by gliders, J. Phys. Oceanogr., 45, 2715, 10.1175\u002FJPO-D-15-0038.1\nJones, 2012, Assimilation of glider and mooring data into a coastal ocean model, Ocean Modell., 47, 1, 10.1016\u002Fj.ocemod.2011.12.009\nJuza, 2013, Origin and pathways of Winter Intermediate Water in the Northwestern Mediterranean Sea using observations and numerical simulation, J. Geophys. Res.-Oceans, 118, 6621, 10.1002\u002F2013JC009231\nKahl, 2010, Autonomous gliders reveal water column features associated with Adélie penguin foraging, Integr. Comp. Biol., 10.1093\u002Ficb\u002Ficq098\nKarstensen, 2014, Summer upwelling at the Boknis Eck time-series station (1982 to 2012)—a combined glider and wind data analysis, Biogeosciences, 11, 3603, 10.5194\u002Fbg-11-3603-2014\nKaufman, 2014, Biogeochemical variability in the Southern Ross Sea as observed by a glider deployment, Deep-Sea Res. I, 92, 93, 10.1016\u002Fj.dsr.2014.06.011\nKaufman, 2014, Biogeochemical variability in the southern Ross Sea as observed by a glider deployment, Deep-Sea Res. I, 92, 93, 10.1016\u002Fj.dsr.2014.06.011\nKeeley, 2010, Data management system for surface drifters\nKent, 2010, The voluntary observing ship (VOS) scheme\nKessler, 2013, ENSO and Short-Term variability of the South equatorial current entering the coral sea, J. Phys. Oceanogr., 43, 956, 10.1175\u002FJPO-D-12-0113.1\nKessler, 2013, Mean circulation of the Coral Sea, J. Geophys. Res. Oceans, 118, 6385, 10.1002\u002F2013JC009117\nKlatt, 2007, A profilin float’s sense of ice, J. Atmos. Ocean. Technol., 24, 1301, 10.1175\u002FJTECH2026.1\nKlinck, 2012, Near-real-time acoustic monitoring of beaked whales and other cetaceans using a seaglider™, PLoS One, 7, e36128, 10.1371\u002Fjournal.pone.0036128\nKlinck, 2012, Near-real-time acoustic monitoring of beaked whales and other cetaceans using a SeagliderTM, PLoS One, 7, e36128, 10.1371\u002Fjournal.pone.0036128\nKohut, 2013, Small-scale variability of the cross-shelf flow over the outer shelf of the Ross Sea, J. Geophys. Res. Oceans, 118, 1863, 10.1002\u002Fjgrc.20090\nLee, 2010, Autonomous platforms in the arctic observing network\nLegler, 2015, The current status of the real-time in situ Global Ocean Observing System for operational oceanography, J. Oper. Oceanogr., 8, 189\nLeppäranta, 2001, Sea-ice kinematics measured with GPS drifters, Ann. Glaciol., 33, 151, 10.3189\u002F172756401781818789\nLe Traon, 2015, Use of satellite observations for operational oceanography: recent achievements and future prospects, J. Oper. Oceanogr., 8, s12\nL’Hévéder, 2013, A glider network design study for a synoptic view of the oceanic mesoscale variability, J. Atmos. Ocean. Technol., 30, 1472, 10.1175\u002FJTECH-D-12-00053.1\nLi, 2013, Impacts of distinct observations during the 2009 Prince William Sound field experiment: a data assimilation study, Cont. Shelf Res., 63, 209, 10.1016\u002Fj.csr.2012.06.018\nLindstrom, E., 2012. A framework for ocean observing. (UNESCO). Available from: http:\u002F\u002Fdx.doi.org\u002F10.5270\u002FOceanObs09-FOO.\nLips, 2011, Vertical dynamics of summer phytoplankton in a stratified estuary (Gulf of Finland, Baltic Sea), Ocean Dyn., 61, 903, 10.1007\u002Fs10236-011-0421-8\nLubchenco, 2012, Science in support of the Deepwater Horizon response, Proc. Natl. Acad. Sci., 109, 20212, 10.1073\u002Fpnas.1204729109\nLumpkin, 2016, Fulfilling observing system implementation requirements with the global drifter array, J. Atmos. Ocean. Technol., 33, 685, 10.1175\u002FJTECH-D-15-0255.1\nLumpkin, 2008\nMany, 2016, Particle assemblage characterization in the Rhone River ROFI, J. Mar. Syst., 157, 39, 10.1016\u002Fj.jmarsys.2015.12.010\nMartin, 2009, Kinematics of a Gulf of Alaska Eddy as Observed with Seaglider, J. Geophys. Res., 114, C12021, 10.1029\u002F2008JC005231\nMatsumoto, 2011, Mapping the sound field of an erupting submarine volcano using an acoustic glider, J. Acoust. Soc. Am., 129, 94, 10.1121\u002F1.3547720\nMazzini P., 2014, Buoyancy-driven coastal currents off Oregon during fall and winter, J. Phys. Oceanogr., 44, 2854, 10.1175\u002FJPO-D-14-0012.1\nMcClatchie, 2012, Resolution of fine biological structure including small narcomedusae across a front in the Southern California Bight, J. Geophys. Res., 117, C04020, 10.1029\u002F2011JC007565\nMelet, 2012, Potential outcomes of glider data assimilation in the Solomon Sea: control of the water mass properties and parameter estimation, J. Mar. Syst., 94, 232, 10.1016\u002Fj.jmarsys.2011.12.003\nMensi, B., Rowe, R., Dees, S., Bryant, D., Jones, D., Carr, R., 2014. Operational glider monitoring, piloting, and communications. 2014 IEEE\u002FOES Autonomous Underwater Vehicles (AUV), Oxford, MS, pp. 1–3. http:\u002F\u002Fdx.doi.org\u002F10.1109\u002FAUV.2014.7054415.\nMerckelbach, 2010, Vertical water velocities from underwater gliders, J. Atmos. Ocean. Technol., 3, 547, 10.1175\u002F2009JTECHO710.1\nMiles, 2013, Temporal and spatial variability in fall storm induced sediment resuspension on the Mid-Atlantic Bight, Coast. Ocean Obs. Syst., 63, 36\nMiles, 2015, Glider observations and modeling of sediment transport in Hurricane Sandy, J. Geophys. Res. Oceans, 120, 1771, 10.1002\u002F2014JC010474\nMonteiro, 2015, Intraseasonal variability linked to sampling alias in air-sea CO2 fluxes in the Southern Ocean, Geophys. Res. Lett., 42, 8507, 10.1002\u002F2015GL066009\nMourre, 2012, Benefit assessment of glider adaptive sampling in the Ligurian Sea, Deep-Sea Res., 68, 68, 10.1016\u002Fj.dsr.2012.05.010\nMourre, 2014, A comparison of the performance of the 3-D super-ensemble and an ensemble Kalman filter for short-range regional ocean prediction, Tellus Ser. A-Dyn. Meteorol. Oceanogr., 66\nNgodock, 2014, A 4DVAR system for the navy coastal ocean model. Part II: Strong and weak constraint assimilation experiments with real observations in Monterey Bay, Mon. Weather Rev., 142, 2108, 10.1175\u002FMWR-D-13-00220.1\nNicholson, 2008, Net community production in the deep euphotic zone of the subtropical North Pacific gyre from glider surveys, Limnol. Oceanogr., 53, 2226, 10.4319\u002Flo.2008.53.5_part_2.2226\nNicholson, 2015, Quantifying subtropical North Pacific gyre mixed layer primary productivity from Seaglider observations of diel oxygen cycles, Geophys. Res. Lett., 42, 4032, 10.1002\u002F2015GL063065\nNiewiadomska, 2008, Submesoscale physical–biogeochemical coupling across the Ligurian Current (northwestern Mediterranean) using a bio-optcal glider, Limnol. Oceanogr., 53, 2210, 10.4319\u002Flo.2008.53.5_part_2.2210\nOhman, 2013, Autonomous ocean measurements in the California current ecosystem, Oceanography, 26, 18, 10.5670\u002Foceanog.2013.41\nOke, 2009, A comparison of shelf observation platforms for assimilation into an eddy-resolving ocean model, Dyn. Atmos. Oceans, 48, 121, 10.1016\u002Fj.dynatmoce.2009.04.002\nOlita, 2014, Observations of a phytoplankton spring bloom onset triggered by a density front in NW Mediterranean, Ocean Sci., 10, 657, 10.5194\u002Fos-10-657-2014\nOliver, 2013, Shrinking the haystack: using AUV in an integrated ocean observatory to map Atlantic Sturgeon in the coastal ocean, Fisheries, 38, 210, 10.1080\u002F03632415.2013.782861\nOmand, 2015, Eddy-driven subduction exports particulate organic carbon from the spring bloom, Science, 348, 222, 10.1126\u002Fscience.1260062\nPalmer, 2010, Future observations for monitoring global ocean heat content\nPalmer, 2015, Turbulence and mixing by internal waves in the Celtic Sea determined from ocean glider microstructure measurements, J. Mar. Syst., 144, 57, 10.1016\u002Fj.jmarsys.2014.11.005\nPan, 2014, Comparisons of different ensemble schemes for glider data assimilation on West Florida Shelf, Ocean Modell., 81, 13, 10.1016\u002Fj.ocemod.2014.06.005\nPascual, 2010, Combining new and conventional sensors to study the Balearic current, Sea Technol., 51, 32\nPattiaratchi, 2010, 2009\nPattiaratchi, 2011, Dense shelf water formation along the south-west Australian inner shelf, Geophys. Res. Lett., 38, L10609, 10.1029\u002F2011GL046816\nPelland, 2013, Subthermocline eddies over the washington continental slope as observed by seagliders, 2003–09, J. Phys. Oceanogr., 10.1175\u002FJPO-D-12-086.1\nPelland, 2014, Fortuitous encounters between seagliders and adult female northern fur seals (Callorhinusursinus) off the Washington (USA) Coast: Upper Ocean variability and links to top predator behavior, Plos One, 9\nPerry, 2008, Seaglider observations of blooms and subsurface chloropyll maxima off the Washington coast, Limnol. Oceanogr., 53, 2169, 10.4319\u002Flo.2008.53.5_part_2.2169\nPierce, 2012, Declining oxygen in the northeast pacific, J. Phys. Oceanogr., 42, 495, 10.1175\u002FJPO-D-11-0170.1\nPiero, 2014, Buoyancy-driven coastal currents off Oregon during fall and winter, J. Phys. Oceanogr., 44, 2854, 10.1175\u002FJPO-D-14-0012.1\nPietri, 2013, Fine scale vertical structure of the upwelling system ofSouthern Peru as observed from glider data, J. Phys. Oceanogr., 43, 631, 10.1175\u002FJPO-D-12-035.1\nPowell, 2012, Use of glider-class acoustic Doppler profilers for estimating zooplankton biomass, J. Plankton Res., 34, 563, 10.1093\u002Fplankt\u002Ffbs023\nPowell, 2015, Covariability of zooplankton gradients with glider-detected density fronts in the Southern California Current System, Deep-Sea Res. II, 112, 79, 10.1016\u002Fj.dsr2.2014.04.002\nPurokoski, 2013, First long-term deployment of Argo float in the Baltic Sea, Sea Technol., 54, 41\nQiu, 2015, Sea surface cooling in the Northern South China Sea observed using Chinese sea-wing underwater glider measurements, Deep-Sea Res. I, 105, 111, 10.1016\u002Fj.dsr.2015.08.009\nQueste, 2012, Deployments in extreme conditions: Pushing the boundaries of Seaglider capabilities, 1\nQueste, 2015, Dissolved oxygen dynamics during a phytoplankton bloom in the Ross Sea polynya, Antarct. Sci., 27, 362, 10.1017\u002FS0954102014000881\nRainville, 2013, Propagation of internal tides generated near Luzon Strait: Observations from autonomous gliders, J. Geophys. Res. Oceans, 118, 4125, 10.1002\u002Fjgrc.20293\nRamp, 2009, Preparing to predict: the second autonomous ocean sampling network (AOSN-II) experiment on the Monterey Bay, Deep-Sea Res. II, 56, 68, 10.1016\u002Fj.dsr2.2008.08.013\nRamp, 2011, Oceanographic and atmospheric conditions on the continental shelf north of the Monterey Bay during August 2006, Dyn. Atmos. Oceans, 52, 192, 10.1016\u002Fj.dynatmoce.2011.04.005\nRantajärvi E. (Ed.) 2003. Alg@line in 2003: 10 years of innovative plankton monitoring and research and operational information service in the Baltic Sea—Meri—Report Series of the Finnish Institute of Marine Research No. 48. p. -55.\nRayburn, 2013, Comparison of the observed mixed layer depth in the lee of the Hawaiian island to the modeledmoxed layer depth of the Regional Navy Coastal Model, Mar. Technol. Soc. J., 47, 55, 10.4031\u002FMTSJ.47.1.3\nReid, 2010, A global continuous plankton recorder programme\nRenaud, 2003, Oceanographic information superiority through battlespace characterization, Sea Technol., 44, 7\nRintoul, 2010, Deep circulation and meridional overturning: Recent progress and a strategy for sustained observations\nRintoul, 2010, Southern ocean observing system (SOOS): Rationale and strategy for sustained observations of the southern ocean\nRiser, 2016, Fifteen years of ocean observations with the global Argo array, Nature Clim. Change, 6, 145, 10.1038\u002Fnclimate2872\nRoemmich, D., Zilberman, N., Sutton, P., Davis, R., Gilson, J., Grindley, K., Janzen, C., Johnson, G., Kobayashi, T., Larson, N., et al. 2014. Development of the Deep Argo Program. Abstract in Ocean Surface Topography meeting, Lake Constance, Germany, 28 October–31 October 2014.\nRossby, 2001, The near-surface velocity and potential vorticity structure of the Gulf Stream, J. Mar. Res., 59, 949, 10.1357\u002F00222400160497724\nRudnick, 2015, Ocean research enabled by underwater gliders, Annu. Rev. Mar. Sci., 2016, 9.1\nRudnick, 2011, On sampling the ocean using underwater gliders, J. Geophys. Res., 116, C08010, 10.1029\u002F2010JC006849\nRudnick, 2015, Cyclonic eddies in the Gulf of Mexico: observations by underwater gliders and simulations by numerical model, J. Phys. Oceanogr., 10.1175\u002FJPO-D-14-0138.1\nRudnick, 2013, High-frequency internal waves near the Luzon Strait observed by underwater gliders, J. Geophys. Res. Oceans, 118, 774, 10.1002\u002Fjgrc.20083\nRuhl, 2011, Societal need for improved understanding of climate change, anthropogenic impacts, and geo-hazard warning drive development of ocean observatories in European Seas, Prog. Oceanogr., 91, 1, 10.1016\u002Fj.pocean.2011.05.001\nRuiz, 2009, Mesoscale dynamics of the Balearic front integrating glider, ship and satellite data, J. Mar. Syst., 78, S3, 10.1016\u002Fj.jmarsys.2009.01.007\nRuiz, 2009, Vertical motion in the upper-ocean from glider and altimetry data, Geophys. Res. Lett., L14607, 10.1029\u002F2009GL038569\nRuiz, 2012, Underwater glider observations and modeling of an abrupt mixing event in the upper ocean, Geophys. Res. Lett., 39, L01603, 10.1029\u002F2011GL050078\nSchaap, 2010, SeaDataNet—Pan-European infrastructure for marine and ocean data management: unified access to distributed data sets, Int. J. Digital Earth, 3, 50, 10.1080\u002F17538941003660974\nSchaeffer, 2015, Influence of a western boundary current on shelf dynamics and upwelling from repeat glider deployments, Geophys. Res. Lett., 42, 121, 10.1002\u002F2014GL062260\nSchaeffer, 2014, Observed bottom boundary layer transport and uplift on the continental shelf adjacent to a western boundary current, J. Geophys. Res. Oceans, 119, 4922, 10.1002\u002F2013JC009735\nSchlundt, 2014, Mixed layer heat and salinity budgets during the onset of the 2011 Atlantic cold tongue, J. Geophys. Res. Oceans, 119, 7882, 10.1002\u002F2014JC010021\nSchofield, 2010, A regional slocum glider network in the Mid-Atlantic Bight leverages broad community engagement, Mar. Technol. Soc. J., 44, 185, 10.4031\u002FMTSJ.44.6.20\nSchönau, 2015, Glider observations of the North Equatorial Current in the western tropical Pacific, J. Geophys. Res. Oceans, 120, 3586, 10.1002\u002F2014JC010595\nSchönau, 2015, The Mindanao current: Mean structure and connectivity, Oceanography, 28, 34, 10.5670\u002Foceanog.2015.79\nSeegers, 2015, Subsurface seeding of surface harmful algal blooms observed through the integration of autonomous gliders, moored environmental sample processors, and satellite remote sensing in southern California, Limnol. Oceanogr., 60, 754, 10.1002\u002Flno.10082\nSend, 2010, A global boundary current circulation observing network\nSend, 2013, SeaCycler: A moored open-ocean profiling system for the upper ocean in extended self-contained deployments, J. Atmos. Ocean. Technol., 30, 1555, 10.1175\u002FJTECH-D-11-00168.1\nSend, 2010, OceanSITES\nSharma, N., Brickley, P., Owen, G., Coholan, P., 2010. Use of air-deployed drogued drifting Buoys for oil spill tracking. In: Oceans-IEEE, Washington State Vongerence and Trade Center, Seattle, WA, Sep 20–23 2010.\nSherwin, 2015, Deep drivers of mesoscale circulation in the central Rockall Trough, Ocean Sci., 11, 343, 10.5194\u002Fos-11-343-2015\nSherwin, 2012, The impact of changes in North Atlantic Gyre distribution on water mass characteristics in the Rockall Trough, ICES J. Mar. Sci., 69, 751, 10.1093\u002Ficesjms\u002Ffsr185\nShulman, 2010, Comparisons of upwelling and relaxation events in the Monterey Bay area, J. Geophys. Res., 115, C06016, 10.1029\u002F2009JC005483\nShulman, 2009, Impact of glider data assimilation on the Monterey Bay model, Deep Sea Res. Part II, 56, 188, 10.1016\u002Fj.dsr2.2008.08.003\nSimonetti, 1992\nSmith, 2010, Automated underway oceanic and atmospheric measurements from ships\nStanev, 2011, Coastal observing and forecasting system for the German Bight—estimates of hydrophysical states, Ocean Sci., 7, 569, 10.5194\u002Fos-7-569-2011\nStommel, 1963, The varieties of oceanographic experience, Science, 139, 572, 10.1126\u002Fscience.139.3555.572\nStommel, 1989, The Slocum Mission, Oceanography, 10.5670\u002Foceanog.1989.26\nStumpf, 2010, Integration of data for nowcasting of harmful algal blooms\nSummerhayes, 2002, Technical tools for regional seas management: the role of the Global Ocean Observing System (GOOS), Ocean Coast. Manage., 45, 777, 10.1016\u002FS0964-5691(02)00106-0\nSun, 2003, Comparisons of surface meteorology and turbulent heat fluxes over the Atlantic: NWP model analyses versus moored buoy observations, J. Clim., 16, 679, 10.1175\u002F1520-0442(2003)016\u003C0679:COSMAT>2.0.CO;2\nSwart, 2014, The seasonal cycle of mixed layer dynamics and phytoplankton biomass in the Sub-Antarctic Zone: A high-resolution glider experiment, J. Mar. Syst.\nTestor, 2010, Gliders as a component of future observing systems\nThomalla, 2015, High-resolution view of the spring bloom initiation and net community production in the Subantarctic Southern Ocean using glider data, ICES J. Mar. Sci., 72, 1999, 10.1093\u002Ficesjms\u002Ffsv105\nThompson, 2014, Eddy transport as a key component of the Antarctic overturning circulation, Nat. Geosci., 10.1038\u002Fngeo2289\nThompson, 2009, Surface circulation at the Tip of the Antarctic Peninsula from Drifters, J. Phys. Oceanogr., 39, 3, 10.1175\u002F2008JPO3995.1\nThomsen, 2016, The formation of a subsurface anticyclonic eddy in the Peru-Chile Undercurrent and its impact on the near-coastal salinity, oxygen, and nutrient distributions, J. Geophys. Res. Oceans, 121, 476, 10.1002\u002F2015JC010878\nTimmermans, 2013, Scales of horizontal density structure in the Chukci Sea surface layer, Cont. Shelf Res., 52, 39, 10.1016\u002Fj.csr.2012.10.015\nTintoré, 2013, SOCIB: The Balearic Islands coastal ocean observing and forecasting system responding to science, technology and society needs, Mar. Technol. Soc. J., 47, 101, 10.4031\u002FMTSJ.47.1.10\nTodd, 2015, Potential vorticity structure in the North Atlantic Western boundary current from underwater glider observations, J. Phys. Oceanogr., 46, 327, 10.1175\u002FJPO-D-15-0112.1\nTodd, 2009, Monitoring the greater San Pedro Bay region using autonomous underwater gliders during fall 2006, J. Geophys. Res., 114\nTodd, 2011, Underwater gliders reveal rapid arrival of El Niño effects off California’s coast, Geophys. Res. Lett., 38\nTodd, 2012, Thermohaline structure in the California Current System: Observations and modeling of spice variance, J. Geophys. Res., 117, C02008, 10.1029\u002F2011JC007589\nTodd, 2011, Poleward flows in the southern California Current System: Glider observations and numerical simulation, J. Geophys. Res., 116\nTrtanj, 2014, Climate variability and change data and information for global public health\nUllgren, 2014, Interaction of the Faroe Bank Channel overflow with Iceland Basin intermediate waters, J. Geophys. Res.-Oceans, 119, 228, 10.1002\u002F2013JC009437\nVenables, 2014, Feedbacks between ice cover, ocean stratification, and heat content in Ryder Bay, western Antarctic Peninsula, J. Geophys. Res. Oceans, 119, 5323, 10.1002\u002F2013JC009669\nVranes, 2005, Comparison of Indonesian Throughflow transport observations, Makassar Strait to eastern Indian Ocean, Geophys. Res. Lett., 32, L10606, 10.1029\u002F2004GL022158\nWall, 2012, Shelf-scale mapping of sound production by fishes in the eastern Gulf of Mexico, using autonomous glider technology, Mar. Ecol. Prog. Ser., 449, 55, 10.3354\u002Fmeps09549\nWeingartner, 2013, Hydrographic variability over the north eastern Chukchi Sea shelf in summer-fall 2008–2010, Cont. Shelf Res., 67, 5, 10.1016\u002Fj.csr.2013.03.012\nWhite, 1994, Design a global observing system for gyre-scale upper ocean temperature variability, Prog. Oceanogr., 36, 169, 10.1016\u002F0079-6611(95)00017-8\nWillis, Z., 2013. US Integrated Ocean Observing System (IOOS (R)) delivering benefits and the Global HF Radar and Glider Initiative. 2013 MTS\u002FIEEE OCEANS—Bergen, JUN 10–14 2013.\nWilkin, 2013, An assessment of the skill of real-time models of Mid-Atlantic Bight continental shelf circulation, J. Geophys. Res. Oceans, 118, 2919, 10.1002\u002Fjgrc.20223\nWoodworth, 2008, The permanent service for mean sea level: An update to the 21st century, J. Coast. Res., 19, 287\nWorley, 2005, ICOADS release 2.1 data and products, Int. J. Climatol., 25, 823, 10.1002\u002Fjoc.1166\nXu, 2011, Seasonal variability of chlorophyll a in the Mid-Atlantic Bight, Cont. Shelf Res., 31, 1640, 10.1016\u002Fj.csr.2011.05.019\nZhang, 2010, Towards an integrated observation and modeling system in the New York Bight using variational methods. Part II: Representer-based observing strategy evaluation, Ocean Modell., 35, 134, 10.1016\u002Fj.ocemod.2010.06.006\nZhao, 2013, Three-dimensional structure of a Karenia brevis bloom: Observations from gliders, satellites, and field measurements, Harmful Algae, 29, 22, 10.1016\u002Fj.hal.2013.07.004\nZhou, 2013, Characterization of double diffusive convection steps and heat budget in the deep Arctic Ocean, J. Geophys. Res. Oceans, 118, 6672, 10.1002\u002F2013JC009141",{"EN":1292},"Potential for an underwater glider component as part of the Global Ocean Observing System",{"VOID":1294},"10.1016\u002Fj.mio.2016.05.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122016300056",[1297,1312,1329,1346,1361,1376,1393,1410,1432,1447],{"id":1298,"sortIndex":158,"researcher":26,"roles":1299,"affiliations":1300,"properties":1309},"5e70c889-2641-4938-93a2-579259f20af7",[852],[1301],{"id":26,"sortIndex":36,"affiliation":1302,"properties":26},{"id":1303,"createTime":1304,"updateTime":1304,"relativeEntities":1305,"slug":26,"properties":1306,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"14aa2e16-03b7-4370-8e50-4450d6b55f63","2024-02-05T11:55:20.820+00:00",[],{"title":1307},{"VI":1308},"Numerical and Marine Infrastructures Department, IFREMER, Plouzané, France",{"title":1310},{"VI":1311},"S. Pouliquen",{"id":1313,"sortIndex":52,"researcher":26,"roles":1314,"affiliations":1315,"properties":1326},"3c34f071-bc11-4401-a809-db8886a3f703",[852],[1316],{"id":26,"sortIndex":36,"affiliation":1317,"properties":26},{"id":1318,"createTime":1319,"updateTime":1320,"relativeEntities":1321,"slug":1322,"properties":1323,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"ba5145d6-9021-4be7-aa5e-2ebe9d45c13c","2024-01-22T15:57:23.637+00:00","2024-10-17T03:11:58.025+00:00",[],"Istituto-Nazionale-di-Oceanografia-e-di-Geofisica-Sperimentale-Trieste-Italy",{"title":1324},{"VI":1325},"Istituto Nazionale di Oceanografia e di Geofisica Sperimentale, Trieste, Italy",{"title":1327},{"VI":1328},"E. Mauri",{"id":1330,"sortIndex":135,"researcher":26,"roles":1331,"affiliations":1332,"properties":1343},"436271cf-e652-4af5-b68f-c288315b8ddf",[852],[1333],{"id":26,"sortIndex":36,"affiliation":1334,"properties":26},{"id":1335,"createTime":1336,"updateTime":1337,"relativeEntities":1338,"slug":1339,"properties":1340,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"4f513e2f-e9e7-44f8-a800-191665041cc1","2024-01-19T19:28:49.108+00:00","2024-10-01T08:52:03.960+00:00",[],"Centre-for-Ocean-and-Atmospheric-Sciences-School-of-Environmental-Sciences-University-of-East-Anglia-Norwich-UK",{"title":1341},{"VI":1342},"Centre for Ocean and Atmospheric Sciences, School of Environmental Sciences, University of East Anglia, Norwich, UK",{"title":1344},{"VI":1345},"K.J. Heywood",{"id":1347,"sortIndex":111,"researcher":26,"roles":1348,"affiliations":1349,"properties":1358},"f8a10983-dd95-417d-ba9a-75f35a59dfb1",[852],[1350],{"id":26,"sortIndex":36,"affiliation":1351,"properties":26},{"id":1352,"createTime":1353,"updateTime":1353,"relativeEntities":1354,"slug":26,"properties":1355,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"84665d5d-e121-4726-8bd4-0bea760aab94","2024-02-05T11:55:20.503+00:00",[],{"title":1356},{"VI":1357},"Oceanography Centre at University of Cyprus, Nicosia, Cyprus",{"title":1359},{"VI":1360},"D. Hayes",{"id":1362,"sortIndex":50,"researcher":26,"roles":1363,"affiliations":1364,"properties":1373},"01269fe9-3dc3-4a79-88c6-b9a4cb491657",[852],[1365],{"id":26,"sortIndex":36,"affiliation":1366,"properties":26},{"id":1367,"createTime":1368,"updateTime":1368,"relativeEntities":1369,"slug":26,"properties":1370,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"d5c6ad12-8b9a-4361-b356-2a8457b5b955","2024-01-14T06:55:57.644+00:00",[],{"title":1371},{"VI":1372},"CNRS, Université Pierre et Marie Curie (Paris 06), UMR 7159, Laboratoire d'Océanographie et de Climatologie: Expérimentations et Approches Numériques (LOCEAN), Paris, France",{"title":1374},{"VI":1375},"L. Mortier",{"id":1377,"sortIndex":115,"researcher":26,"roles":1378,"affiliations":1379,"properties":1390},"967a169f-5fff-469e-823e-a91a2dac6170",[852],[1380],{"id":26,"sortIndex":36,"affiliation":1381,"properties":26},{"id":1382,"createTime":1383,"updateTime":1384,"relativeEntities":1385,"slug":1386,"properties":1387,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"2309193f-e407-46c1-8acc-98b3181ecafc","2023-12-14T15:33:07.276+00:00","2024-11-26T01:57:56.905+00:00",[],"GEOMAR-Helmholtz-Centre-for-Ocean-Research-Kiel-Kiel-Germany",{"title":1388},{"VI":1389},"GEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, Germany",{"title":1391},{"VI":1392},"J. Karstensen",{"id":1394,"sortIndex":59,"researcher":26,"roles":1395,"affiliations":1396,"properties":1407},"1b9e1674-6a31-481b-a1f4-aa3e7faefee2",[852],[1397],{"id":26,"sortIndex":36,"affiliation":1398,"properties":26},{"id":1399,"createTime":1400,"updateTime":1401,"relativeEntities":1402,"slug":1403,"properties":1404,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"9a0b7b1a-ee4c-469a-919c-f38ffa7bad07","2023-12-27T07:49:49.347+00:00","2024-12-27T21:26:21.257+00:00",[],"Finnish-Meteorological-Institute-Helsinki-Finland",{"title":1405},{"VI":1406},"Finnish Meteorological Institute, Helsinki, Finland",{"title":1408},{"VI":1409},"P. Alenius",{"id":1411,"sortIndex":36,"researcher":26,"roles":1412,"affiliations":1413,"properties":1429},"5cb091f9-18c3-4bf1-b023-ef676074a4bb",[852],[1414,1419],{"id":26,"sortIndex":36,"affiliation":1415,"properties":26},{"id":1382,"createTime":1383,"updateTime":1384,"relativeEntities":1416,"slug":1386,"properties":1417,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1418},{"VI":1389},{"id":1420,"sortIndex":115,"affiliation":1421,"properties":1428},"582746b1-56c1-4a06-a27a-cbc06e722e91",{"id":1422,"createTime":1423,"updateTime":1423,"relativeEntities":1424,"slug":26,"properties":1425,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"6caf75ba-14a9-46ca-94c6-123114b3b809","2024-02-05T11:55:20.343+00:00",[],{"title":1426},{"VI":1427},"Marine Systems Institute at Tallinn University of Technology, Tallinn, Estonia",{},{"title":1430},{"VI":1431},"T. Liblik",{"id":1433,"sortIndex":162,"researcher":26,"roles":1434,"affiliations":1435,"properties":1444},"a880821a-3360-41e8-a5ff-379cf875e6dd",[852],[1436],{"id":26,"sortIndex":36,"affiliation":1437,"properties":26},{"id":1438,"createTime":1439,"updateTime":1439,"relativeEntities":1440,"slug":26,"properties":1441,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"45c7c7e6-0add-4771-9dd3-2b6cc45ada76","2024-02-05T11:55:20.623+00:00",[],{"title":1442},{"VI":1443},"Mediterranean Institute for Advanced Studies, IMEDEA, Esporles, Illes Balears, Spain",{"title":1445},{"VI":1446},"S. Ruiz",{"id":1448,"sortIndex":114,"researcher":26,"roles":1449,"affiliations":1450,"properties":1456},"dd2d4c75-12e8-43af-a059-514e166cf96f",[852],[1451],{"id":26,"sortIndex":36,"affiliation":1452,"properties":26},{"id":1367,"createTime":1368,"updateTime":1368,"relativeEntities":1453,"slug":26,"properties":1454,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1455},{"VI":1372},{"title":1457},{"VI":1458},"P. Testor",{"url":1295,"publisher":1460,"properties":1474},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1461,"slug":663,"properties":1462,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1465,"manageAffiliations":1466,"indexDatabases":1467,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1463,"title":1464},{"VOID":666},{"EN":668},[],[],[1468],{"id":673,"indexDatabase":1469,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1470,"label":1471,"description":1472,"key":683,"publicationTags":1473,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1475,"pages":1476},{"VOID":896},{"VOID":1477},"50-82",{"id":1479,"createTime":1480,"updateTime":1481,"relativeEntities":1482,"slug":1483,"properties":1484,"entityType":709,"verifyStatus":25,"verifyTime":1481,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1491,"fullTextUrl":26,"authors":1492,"publicationType":753,"publisherRelationship":1542,"citationCount":26,"citationInfo":26,"publishDate":1169,"publishYear":1170,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"7bd4bad0-c2ed-4196-86dc-1c9eb6ebca6c","2024-01-08T23:33:13.435+00:00","2024-12-11T17:32:38.954+00:00",[],"Estimating-depth-and-explosive-charge-weight-for-an-extremely-shallow-underwater-explosion-of-the-ROKS-Cheonan-sinking-in-the-Yellow-Sea",{"references":1485,"title":1487,"doi":1489},{"VOID":1486},"Kim, 2013, Forensic seismology and boundary element method application vis-à-vis ROKS Cheonan underwater explosion, J. Marine Sci. Appl., 12, 422, 10.1007\u002Fs11804-013-1213-y\nKim, 2013, Underwater explosion (UWE) analysis of the ROKS Cheonan incident, Pure Appl. Geophysics., 170, 479, 10.1007\u002Fs00024-013-0660-3\nLi, 2012, Some dynamical characteristics of a non-spherical bubble in proximity to a free surface, Acta Mech., 223, 2331, 10.1007\u002Fs00707-012-0674-4\nLurton, 2002, 13\nNicolas, 2003, Geoacoustical parameters estimation with impulsive and boat noise sources, IEEE J. Ocean. Eng., 28, 494, 10.1109\u002FJOE.2003.816687\nPorter, 1987, Gaussian beam tracing for computing ocean acoustic Fields, J. Acoust. Soc. Am., 82, 1349, 10.1121\u002F1.395269\nRodriguez, 2012, Seismo-acoustic ray model benchmarking against experimental tank data, J. Acoust. Soc. Am., 132, 709, 10.1121\u002F1.4734236\nShapira, 1981, T phases from underwater explosions off the coast of Israel, Bull. Seismol. Soc. Am., 71, 1049, 10.1785\u002FBSSA0710041049\nTindle, 1980, Cycle distances and attenuation in shallow water, J. Acoust. Soc. Am., 68, 1489, 10.1121\u002F1.385073\nUrick, 1983, 172\nWeston, 1994, Waves shifts, beam shifts, and their role in modal and adiabatic Propagation, J. Acoust. Soc. Am., 96, 406, 10.1121\u002F1.410491\nZhang, 2008, Some dynamical characteristics of a bubble jet near a vertical wall, J. Marine Sci. Appl., 7, 1, 10.1007\u002Fs11804-008-7044-1\nZhang, 2008, The interaction of an underwater explosion bubble and an elastic plastic structure, Appl. Ocean Res., 30b, 159, 10.1016\u002Fj.apor.2008.11.003",{"EN":1488},"Estimating depth and explosive charge weight for an extremely shallow underwater explosion of the ROKS Cheonan sinking in the Yellow Sea",{"VOID":1490},"10.1016\u002Fj.mio.2015.01.002","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122015000031",[1493,1510,1527],{"id":1494,"sortIndex":114,"researcher":26,"roles":1495,"affiliations":1496,"properties":1507},"ffefa3a8-3371-4974-a101-7e165092efa4",[852],[1497],{"id":26,"sortIndex":36,"affiliation":1498,"properties":26},{"id":1499,"createTime":1500,"updateTime":1501,"relativeEntities":1502,"slug":1503,"properties":1504,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"08bf7d80-2f32-42a9-9f83-53157173f77b","2024-01-08T23:33:13.467+00:00","2025-06-11T21:43:39.532+00:00",[],"University-of-Algarve-LARSyS-Campus-de-Gambelas-Faro-8005-139-Portugal",{"title":1505},{"VI":1506},"University of Algarve, LARSyS, Campus de Gambelas, Faro, 8005-139, Portugal",{"title":1508},{"VI":1509},"Orlando Camargo Rodriguez",{"id":1511,"sortIndex":115,"researcher":26,"roles":1512,"affiliations":1513,"properties":1524},"bb72d918-dae2-444e-be9c-b8bb9639d460",[852],[1514],{"id":26,"sortIndex":36,"affiliation":1515,"properties":26},{"id":1516,"createTime":1517,"updateTime":1518,"relativeEntities":1519,"slug":1520,"properties":1521,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"fd7e630a-acaf-4b12-bc93-912e88ab4f75","2023-11-27T17:36:25.133+00:00","2024-10-09T15:22:17.915+00:00",[],"Geophysical-Institute-of-Israel-P-O-Box-182-Lod-71100-Israel",{"title":1522},{"VI":1523},"Geophysical Institute of Israel, P.O. Box 182, Lod 71100, Israel",{"title":1525},{"VI":1526},"Yefim Gitterman",{"id":1528,"sortIndex":36,"researcher":26,"roles":1529,"affiliations":1530,"properties":1539},"3591f738-4ae9-4213-8aca-1e708ea84be5",[852],[1531],{"id":26,"sortIndex":36,"affiliation":1532,"properties":26},{"id":1533,"createTime":1534,"updateTime":1534,"relativeEntities":1535,"slug":26,"properties":1536,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"feac8adc-7c34-4cf7-874c-933fe5cfbca8","2024-01-08T23:33:13.446+00:00",[],{"title":1537},{"VI":1538},"Korea Seismological Institute, Goyang, 410-734, Republic of Korea",{"title":1540},{"VI":1541},"So Gu Kim",{"url":1491,"publisher":1543,"properties":1557},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1544,"slug":663,"properties":1545,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1548,"manageAffiliations":1549,"indexDatabases":1550,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1546,"title":1547},{"VOID":666},{"EN":668},[],[],[1551],{"id":673,"indexDatabase":1552,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1553,"label":1554,"description":1555,"key":683,"publicationTags":1556,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1558,"pages":1559},{"VOID":1166},{"VOID":1560},"29-38",{"id":1562,"createTime":1563,"updateTime":1563,"relativeEntities":1564,"slug":26,"properties":1565,"entityType":709,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1572,"fullTextUrl":26,"authors":1573,"publicationType":753,"publisherRelationship":1670,"citationCount":26,"citationInfo":26,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"df911990-8b04-404b-bb0a-8eeb3d96b948","2024-01-22T12:44:48.876+00:00",[],{"references":1566,"title":1568,"doi":1570},{"VOID":1567},"Assmann, 2011, Spectrophotometric high-precision seawater pH determination for use in underway measuring systems, Ocean Sci., 7, 597, 10.5194\u002Fos-7-597-2011\nBakker, 2014, An update to the surface Ocean CO2 Atlas (SOCAT version 2), Earth\nBates, 2009, The Arctic Ocean marine carbon cycle: evaluation of air-sea CO 2 exchanges, ocean acidification impacts and potential feedbacks, Biogeosciences, 6, 2433, 10.5194\u002Fbg-6-2433-2009\nBeitsch, A., Kaleschke, L., Kern, S., 2013. AMSR2 ASI 3.125 km Sea Ice Concentration Data, Vol. 0.1, edited by U. o. H. Institute of Oceanography, Germany, digital media (ftp-projects.zmaw.de\u002Fseaice\u002F).\nBresnahan, 2014, Best practices for autonomous measurement of seawater pH with the Honeywell Durafet, Methods Oceanogr., 9, 44, 10.1016\u002Fj.mio.2014.08.003\nByrne, 2010, Direct observations of basin-wide acidification of the north Pacific Ocean, Geophys. Res. Lett., 37\nCarter, 2013, An automated system for spectrophotometric seawater pH measurements, Limnol. Oceanogr. Methods, 11, 16, 10.4319\u002Flom.2013.11.16\nChatterjee, 1986, Influential observations, high leverage points, and outliers in linear regression, Statist. Sci., 1, 379, 10.1214\u002Fss\u002F1177013622\nChhajed, 2005, Influence of junction temperature on chromaticity and color-rendering properties of trichromatic white-light sources based on light-emitting diodes, J. Appl. Phys., 97, 10.1063\u002F1.1852073\nDeGrandpre, 2014, Considerations for the measurement of spectrophotometric pH for ocean acidification and other studies, Limnol. Oceanogr. Methods, 12, 830, 10.4319\u002Flom.2014.12.830\nDickson, 1990, Thermodynamics of the dissociation of boric acid in synthetic seawater from 273.15 to 318.15 K, Deep Sea Res. Part A, 37, 755, 10.1016\u002F0198-0149(90)90004-F\nDickson, 1990, Standard potential of the reaction: AgCl(s)+12H2(g)=Ag(s)+HCl(aq), and and the standard acidity constant of the ion HSO4− in synthetic sea water from 273.15 to 318.15 K, J. Chem. Thermodyn., 22, 113, 10.1016\u002F0021-9614(90)90074-Z\nDickson, 1987, A comparison of the equilibrium constants for the dissociation of carbonic acid in seawater media, Deep Sea Res. Part A, 34, 1733, 10.1016\u002F0198-0149(87)90021-5\nDickson, 2007, vol. 3\nDraper, 1998, 307\nEdmond, J.M., 1970. High precision determination of titration alkalinity and total carbon dioxide content of sea water by potentiometric titration, paper presented at Deep Sea Research and Oceanographic Abstracts, Elsevier.\nEricson, 2014, Increasing carbon inventory of the intermediate layers of the Arctic Ocean, J. Geophys. Res.: Oceans, 119, 2312, 10.1002\u002F2013JC009514\nHofmann, 2011, High-frequency dynamics of ocean pH: A multi-ecosystem comparison, PLoS One, 6, 10.1371\u002Fjournal.pone.0028983\n2013, 1535\nLee, 2010, The universal ratio of boron to chlorinity for the north Pacific and north Atlantic oceans, Geochim. Cosmochim. Acta, 74, 1801, 10.1016\u002Fj.gca.2009.12.027\nLiu, 2011, Purification and characterization of meta-cresol purple for spectrophotometric seawater pH measurements, Environ. Sci. Technol., 4862, 10.1021\u002Fes200665d\nMartz, 2010, Testing the Honeywell Durafet for seawater pH applications, Limnol. Oceanogr. Methods, 8, 172, 10.4319\u002Flom.2010.8.172\nMathis, 2015, Ocean acidification in the surface waters of the Pacific-Arctic boundary regions, Oceanography, 28, 122, 10.5670\u002Foceanog.2015.36\nMehrbach, 1973, Measurement of the apparent dissociation constants of carbonic acid in seawater at atmospheric pressure, Limnol. Oceanogr., 897, 10.4319\u002Flo.1973.18.6.0897\nMiller, 2014, Changes in the marine carbonate system of the western Arctic: patterns in a rescued dataset, Polar Res., 33, 20577, 10.3402\u002Fpolar.v33.20577\nMillero, 2007, The marine inorganic carbon cycle, Chem. Rev., 107, 308, 10.1021\u002Fcr0503557\nMillero, 2002, Dissociation constants for carbonic acid determined from field measurements, Deep Sea Res. I Oceanogr. Res. Pap., 49, 1705, 10.1016\u002FS0967-0637(02)00093-6\nNewton, J.A., Feely, R.A., Jewett, E.B., Williamson, P., Mathis, J., 2015. Global Ocean Acidification Observing Network: Requirements and Governance Plan. second ed., GOA-ON.\nPapadimitriou, 2016, The measurement of pH in saline and hypersaline media at sub-zero temperatures: Characterization of Tris buffers, Mar. Chem., 10.1016\u002Fj.marchem.2016.06.002\nPierrot, D., Lewis, E., Wallace, D.W.R., 2006. MS Excel Program Developed for CO2 System Calculations. ORNL\u002FCDIAC-105a. Carbon Dioxide Information Analysis Center, edited by U. S. D. o. E. Oak Ridge National Laboratory, Oak Ridge, Tennessee.\nRérolle, 2013, Development of a colorimetric microfluidic pH sensor for autonomous seawater measurements, Anal. Chim. Acta, 786, 124, 10.1016\u002Fj.aca.2013.05.008\nRérolle, 2012, Seawater-pH measurements for ocean-acidification observations, TrAC Trends Anal. Chem., 40, 146, 10.1016\u002Fj.trac.2012.07.016\nRoy, 1993, The dissociation constants of carbonic acid in seawater at salinities 5 to 45 and temperatures 0 to 45 C, Mar. Chem., 44, 249, 10.1016\u002F0304-4203(93)90207-5\nSabine, C., Key, R.M., Kozyr, A., Feely, R.A., Wanninkhof, R., Millero, F.J., Peng, Th., Bullister, J.L., Lee, K., 2005. Global ocean data analysis project (GLODAP): results and data, ORNL\u002FCDIAC-145, NDP-083. Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, US Department of Energy, Oak Ridge, Tennessee, p. 110.\nSeiter, 2001, Redundant chemical sensors for calibration-impossible applications, Talanta, 54, 99, 10.1016\u002FS0039-9140(00)00635-4\nShitashima, 2002\nTakeshita, 2015, Including high frequency variability in coastal ocean acidification projections, Biogeosci. Discuss., 12, 10.5194\u002Fbgd-12-7125-2015\nTakeshita, 2014, Characteriszation of an ion sensitive field effect transistor and choride ion selective electrodes for pH measurements in seawater, Anal. Chem., 86, 11189, 10.1021\u002Fac502631z\nTanhua, 2009, Ventilation of the Arctic Ocean: Mean ages and inventories of anthropogenic CO2 and CFC-11, J. Geophys. Res.: Oceans, 114, C01002, 10.1029\u002F2008JC004868\nTynan, 2016, Physical and biogeochemical controls on the variability in surface pH and calcium carbonate saturation states in the Atlantic sectors of the Arctic and Southern Oceans, Deep-Sea Res. Part II, 10.1016\u002Fj.dsr2.2016.01.001\nYao, 2007, Impurities in indicators used for spectrophotometric seawater pH measurements: Assessment and remedies, Mar. Chem., 107, 167, 10.1016\u002Fj.marchem.2007.06.012",{"EN":1569},"Measuring pH in the Arctic Ocean: Colorimetric method or SeaFET?",{"VOID":1571},"10.1016\u002Fj.mio.2016.05.006","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2211122015300244",[1574,1589,1601,1613,1628,1643,1658],{"id":1575,"sortIndex":36,"researcher":26,"roles":1576,"affiliations":1577,"properties":1586},"6fb6e3ab-6641-41f5-9494-40518db6b754",[852],[1578],{"id":26,"sortIndex":36,"affiliation":1579,"properties":26},{"id":1580,"createTime":1581,"updateTime":1581,"relativeEntities":1582,"slug":26,"properties":1583,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"5d8caff1-3d3b-431f-9c11-50c633c486f5","2024-01-22T12:44:48.909+00:00",[],{"title":1584},{"VI":1585},"Sorbonne Universités (UPMC, Univ Paris 06)-CNRS-IRD-MNHN, LOCEAN Laboratory, 75005, Paris, France",{"title":1587},{"VI":1588},"Victoire Rérolle",{"id":1590,"sortIndex":114,"researcher":26,"roles":1591,"affiliations":1592,"properties":1598},"0ac9f422-5dca-47cb-b497-55b9f05d0993",[852],[1593],{"id":26,"sortIndex":36,"affiliation":1594,"properties":26},{"id":1580,"createTime":1581,"updateTime":1581,"relativeEntities":1595,"slug":26,"properties":1596,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1597},{"VI":1585},{"title":1599},{"VI":1600},"Mehrad Rafizadeh",{"id":1602,"sortIndex":115,"researcher":26,"roles":1603,"affiliations":1604,"properties":1610},"842d11f4-3d43-4185-94ff-2a715d571f29",[852],[1605],{"id":26,"sortIndex":36,"affiliation":1606,"properties":26},{"id":1580,"createTime":1581,"updateTime":1581,"relativeEntities":1607,"slug":26,"properties":1608,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1609},{"VI":1585},{"title":1611},{"VI":1612},"Diana Ruiz-Pino",{"id":1614,"sortIndex":59,"researcher":26,"roles":1615,"affiliations":1616,"properties":1625},"88e08217-88b9-4e6c-885b-b6a3db7e94c4",[852],[1617],{"id":26,"sortIndex":36,"affiliation":1618,"properties":26},{"id":1619,"createTime":1620,"updateTime":1620,"relativeEntities":1621,"slug":26,"properties":1622,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"a45afe18-68ad-4cee-b22e-155ddb962b4d","2024-01-22T12:44:48.927+00:00",[],{"title":1623},{"VI":1624},"National Oceanography Centre, Southampton, SO143ZH, United Kingdom",{"title":1626},{"VI":1627},"Socratis Loucaides",{"id":1629,"sortIndex":135,"researcher":26,"roles":1630,"affiliations":1631,"properties":1640},"b6485f69-e805-49af-940c-8339cbd76669",[852],[1632],{"id":26,"sortIndex":36,"affiliation":1633,"properties":26},{"id":1634,"createTime":1635,"updateTime":1635,"relativeEntities":1636,"slug":26,"properties":1637,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"d61699f4-ff09-4035-8588-528030435134","2024-01-22T12:44:48.949+00:00",[],{"title":1638},{"VI":1639},"Second institute of Oceanography, Hangzhou City, 310012, China",{"title":1641},{"VI":1642},"Jianfang Chen",{"id":1644,"sortIndex":111,"researcher":26,"roles":1645,"affiliations":1646,"properties":1655},"4632c90d-6f46-46f9-8aa6-8703d9f4fa12",[852],[1647],{"id":26,"sortIndex":36,"affiliation":1648,"properties":26},{"id":1649,"createTime":1650,"updateTime":1650,"relativeEntities":1651,"slug":26,"properties":1652,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"16b8dd59-4bce-41eb-8b31-6391dc0f6720","2024-01-22T12:44:48.935+00:00",[],{"title":1653},{"VI":1654},"Ocean Sciences, College of Natural Sciences, Bangor University, Menai Bridge, LL59 5AB, United Kingdom",{"title":1656},{"VI":1657},"Stathys Papadimitriou",{"id":1659,"sortIndex":162,"researcher":26,"roles":1660,"affiliations":1661,"properties":1667},"98342762-059b-4d41-b68a-64112b84fc50",[852],[1662],{"id":26,"sortIndex":36,"affiliation":1663,"properties":26},{"id":1619,"createTime":1620,"updateTime":1620,"relativeEntities":1664,"slug":26,"properties":1665,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1666},{"VI":1624},{"title":1668},{"VI":1669},"Matthew Mowlem",{"url":1572,"publisher":1671,"properties":1685},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1672,"slug":663,"properties":1673,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1676,"manageAffiliations":1677,"indexDatabases":1678,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1674,"title":1675},{"VOID":666},{"EN":668},[],[],[1679],{"id":673,"indexDatabase":1680,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1681,"label":1682,"description":1683,"key":683,"publicationTags":1684,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1686,"pages":1687},{"VOID":896},{"VOID":1688},"32-49",{"id":1690,"createTime":1691,"updateTime":1692,"relativeEntities":1693,"slug":1694,"properties":1695,"entityType":709,"verifyStatus":25,"verifyTime":1692,"verifyNote":711,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"primaryUrl":1702,"fullTextUrl":26,"authors":1703,"publicationType":753,"publisherRelationship":1787,"citationCount":26,"citationInfo":26,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":26,"isForceReanalyzing":835},"6a5773f2-fbfd-4180-9671-25bd99bb75ca","2023-12-28T13:40:52.083+00:00","2025-01-06T09:03:09.767+00:00",[],"A-topological-approach-for-quantitative-comparisons-of-ocean-model-fields-to-satellite-ocean-color-data",{"references":1696,"title":1698,"doi":1700},{"VOID":1697},"Androulidakis, 2013, On the processes that influence the transport and fate of Mississippi waters under flooding outflow conditions, Ocean Dyn., 63, 143, 10.1007\u002Fs10236-012-0587-8\nAndroulidakis, 2015, Process studies on the Mississippi River plume: impact of topography, wind and discharge conditions, Cont. Shelf Res., 107, 33, 10.1016\u002Fj.csr.2015.07.014\nBinding, 2003, Measuring the salinity of the Clyde Sea from remotely sensed ocean colour, Estuar. Coast. Shelf Sci., 57, 605, 10.1016\u002FS0272-7714(02)00399-2\nBleck, 2002, An oceanic general circulation model framed in hybrid isopycnic-cartesian coordinates, Ocean Modell., 4, 55, 10.1016\u002FS1463-5003(01)00012-9\nBrekke, 2005, Oil spill detection by satellite remote sensing, Remote Sens. Environ., 95, 1, 10.1016\u002Fj.rse.2004.11.015\nChaichitehrani, 2014, Colored dissolved organic matter dynamics in the northern Gulf of Mexico from ocean color and numerical model results, J. Coast. Res., 30, 800, 10.2112\u002FJCOASTRES-D-13-00036.1\nChassignet, 2005, Assessment of data assimilative ocean models in the Gulf of Mexico using ocean color, vol. 161, 87\nChassignet, 2006, Generalized vertical coordinates for eddy-resolving global and coastal ocean forecasts, Oceanography, 19, 118, 10.5670\u002Foceanog.2006.95\nChassignet, 2003, North Atlantic simulations with the Hybrid Coordinate Ocean Model (HYCOM): Impact of the vertical coordinate choice, reference pressure, and thermobaricity, J. Phys. Oceanogr., 2504, 10.1175\u002F1520-0485(2003)033\u003C2504:NASWTH>2.0.CO;2\nChonga, 2014, Climate change and salinity in drinking water as a global problem: using remote-sensing methods to monitor surface water salinity, Int. J. Remote Sens., 35, 1585, 10.1080\u002F01431161.2013.878065\nCummings, 2005, Operational multivariate ocean data assimilation, Q. J. R. Meteorol. Soc., 131, 3583, 10.1256\u002Fqj.05.105\nDaoudi, 1999, Shape distances for contour tracking and motion estimation, Pattern Recognit., 32, 1297, 10.1016\u002FS0031-3203(98)00144-7\nDel Vecchio, 2004, Influence of the Amazon River on the surface optical properties of the western tropical North Atlantic Ocean, J. Geophys. Res. Oceans, 119, C11\nDubuisson, M.-P., Jain, A., 1994. A modified Hausdorff distance for object matching. In: Proceedings of the 12th IAPR International Conference on Pattern Recognition, 1994, pp. 566–568.\nDukhovskoy, 2015, Skill metrics for evaluation and comparison of sea ice models, J. Geophys. Res. Oceans, 120, 5910, 10.1002\u002F2015JC010989\nGhani, 2014, The SailBuoy remotely-controlled unmanned vessel: measurements of near surface temperature, salinity and oxygen concentration in the Gulf of Mexico, Methods Oceanogr., 10, 104, 10.1016\u002Fj.mio.2014.08.001\nGreen, 2004, Analysis of apparent optical properties and ocean color models using measurements of seawater constituents in New England continental shelf surface waters, J. Geophys. Res., 109, 10.1029\u002F2003JC001977\nGregg, 2008, Assimilation of SeaWiFS ocean chlorophyll data into a three-dimensional global ocean model, J. Mar. Syst., 69, 205, 10.1016\u002Fj.jmarsys.2006.02.015\nGregg, 2003, Phytoplankton and iron: validation of a global three-dimensional ocean biogeochemical model, Deep Sea Res. Part II, 50, 3143, 10.1016\u002Fj.dsr2.2003.07.013\nHodur, 2002, The Coupled Ocean\u002FAtmosphere Mesoscale Prediction System (COAMPS), Oceanography, 15, 88, 10.5670\u002Foceanog.2002.39\nHu, 2015, A harmful algal bloom of karenia brevis in the northeastern Gulf of Mexico as revealed by MODIS and VIIRS: A comparison, Sensors, 15, 2873, 10.3390\u002Fs150202873\nHu, 2012, Chlorophyll algorithms for oligotrophic oceans: A novel approach based on three-band reflectance difference, J. Geophys. Res., 117, C01011, 10.1029\u002F2011JC007395\nHu, 2004, The dispersal of the Amazon and Orinoco River water in the tropical Atlantic and Caribbean Sea: Observation from space and S-PALACE floats, Deep Sea Res. Part II, 51, 1151, 10.1016\u002FS0967-0645(04)00105-5\nHu, 2003, Comparison of ship and satellite bio-optical measurements on the continental margin of the NE Gulf of Mexico, Int. J. Remote Sens., 24, 2597, 10.1080\u002F0143116031000067007\nHu, 2016, Developing a smart semantic web with linked data and models for near real-time monitoring of red tides in the eastern Gulf of Mexico, IEEE Syst. J., 99, 1\nHuang, 1993, Real freshwater flux as a natural boundary condition for the salinity balance and thermohaline circulation forced by evaporation and precipitation, J. Phys. Oceanogr., 23, 2428, 10.1175\u002F1520-0485(1993)023\u003C2428:RFFAAN>2.0.CO;2\nHuttenlocher, 1993, Comparing images using the Hausdorff distance, IEEE Trans. Pattern Anal. Mach. Intell., 15, 850, 10.1109\u002F34.232073\nHuttenlocher, D., Rucklidge, W., 1993. A multi-resolution technique for comparing images using the Hausdorff distance. In: 1993 IEEE Computer Society Conference on Computer Vision and Pattern Recognition, pp. 705–706.\nKourafalou, 2013, Influence of Mississippi induced circulation on the deepwater Horizon oil spill transport, J. Geophys. Res., 118, 1, 10.1002\u002Fjgrc.20272\nKourafalou, 2009, Evaluation of global ocean data assimilation experiment products on South Florida nested simulations with the Hybrid Coordinate Ocean Model, Ocean Dyn., 59, 47, 10.1007\u002Fs10236-008-0160-7\nLiu, 2013, Evolution of the loop current system during the deepwater horizon oil spill event as observed with drifters and satellites, 91\nLiu, 2011, Tracking the deepwater horizon oil spill: A modeling perspective, EOS Trans. Am. Geophys. Union, 92, 45, 10.1029\u002F2011EO060001\nMariano, 2011, On the modeling of the 2010 Gulf of Mexico oil spill, Dyn. Atmos. Oceans, 52, 322, 10.1016\u002Fj.dynatmoce.2011.06.001\nMattern, 2010, Introduction and assessment of measures for quantitative model-data comparison using satellite images, Remote Sens., 2, 794, 10.3390\u002Frs2030794\nMcClain, 2009, A decade of satellite ocean color observations, Annu. Rev. Mar. Sci., 1, 19, 10.1146\u002Fannurev.marine.010908.163650\nMetzger, 2014, US Navy operational global ocean and Arctic ice prediction systems, Oceanography, 27, 32, 10.5670\u002Foceanog.2014.66\nMorey, 2003, Export pathways for river discharged fresh water in the northern Gulf of Mexico, J. Geophys. Res. Oceans, 108, 10.1029\u002F2002JC001674\nMorey, 2003, The annual cycle of riverine influence in the eastern Gulf of Mexico basin, Geophys. Res. Lett., 30, 10.1029\u002F2003GL017348\nMorey, 2005, The seasonal variability of continental shelf circulation in the northern and western Gulf of Mexico from a high-resolution numerical model, vol. 161\nMuller-Karger, 2015, Natural variability of surface oceanographic conditions in the offshore Gulf of Mexico, Prog. Oceanogr., 134, 54, 10.1016\u002Fj.pocean.2014.12.007\nNan, 2010, Analysis of spatial similarities between NEXRAD and NLDAS precipitation data products, IEEE J. Sel. Top. Appl. Earth Obs. Remote Sens., 3, 371, 10.1109\u002FJSTARS.2010.2048418\nRosmond, 2002, Navy Operational Global Atmospheric Predictions System (NOGAPS): Forcing for ocean models, Oceanography, 15, 99, 10.5670\u002Foceanog.2002.40\nRucklidge, 1997, Efficiently locating objects using the hausdorff distance, Int. J. Comput. Vis., 24, 251, 10.1023\u002FA:1007975324482\nSaha, 2010, The NCEP climate forecast system reanalysis, Bull. Am. Meteorol. Soc., 91, 1015, 10.1175\u002F2010BAMS3001.1\nSchiller, 2010, Modeling river plume dynamics with the Hybrid Coordinate Ocean Model, Ocean Modell., 33, 101, 10.1016\u002Fj.ocemod.2009.12.005\nSchiller, 2011, The dynamics of the Mississippi River plume: Impact of topography, wind and offshore forcing on the fate of plume waters, J. Geophys. Res. Oceans, 116, 10.1029\u002F2010JC006883\nShchepetkin, 2003, A method for computing horizontal pressure-gradient force in an oceanic model with a nonaligned vertical coordinate, J. Geophys. Res., 108, 10.1029\u002F2001JC001047\nShchepetkin, 2005, The Regional Ocean Modeling System: A split-explicit, free-surface, topography following coordinates ocean model, Ocean Modell., 9, 347, 10.1016\u002Fj.ocemod.2004.08.002\nSmith, 2016, Numerical model evaluation using automated underway ship observations, J. Atmos. Ocean. Technol., 33, 409, 10.1175\u002FJTECH-D-15-0052.1\nSong, 1994, A semi-implicit ocean circulation model using a generalized topography-following coordinate system, J. Comput. Phys., 115, 228, 10.1006\u002Fjcph.1994.1189\nStumpf, 2003, Monitoring Karenia brevis blooms in the Gulf of Mexico using satellite ocean color imagery and other data, Harmful Algae, 2, 147, 10.1016\u002FS1568-9883(02)00083-5\nVenugopal, 2005, A new metric for comparing precipitation patterns with an application to ensemble forecasts, J. Geophys. Res.: Atmos., D8, 110\nWalker, 1996, Evolution and structure of a coastal squirt off the Mississippi River delta: Northern Gulf of Mexico, J. Geophys. Res. Oceans, 101, 20643, 10.1029\u002F96JC00919\nWalker, 2005, Effects of river discharge, wind stress, and slope eddies on circulation and the satellite-observed structure of the Mississippi River, J. Coast. Res., 1228, 10.2112\u002F04-0347.1\nZhang, 2004, Review of shape representation and description techniques, Pattern Recognit., 37, 1, 10.1016\u002Fj.patcog.2003.07.008\nZhang, 2014, Improving sediment transport prediction by assimilating satellite images in a tidal bay model of Hong Kong, Water, 6, 642, 10.3390\u002Fw6030642",{"EN":1699},"A topological approach for quantitative comparisons of ocean model fields to satellite ocean color data",{"VOID":1701},"10.1016\u002Fj.mio.2016.09.005","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS221112201630010X",[1704,1719,1734,1751,1763,1775],{"id":1705,"sortIndex":162,"researcher":26,"roles":1706,"affiliations":1707,"properties":1716},"e1d6052c-c0d7-445d-b3c9-881446ca81a9",[852],[1708],{"id":26,"sortIndex":36,"affiliation":1709,"properties":26},{"id":1710,"createTime":1711,"updateTime":1711,"relativeEntities":1712,"slug":26,"properties":1713,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"d06873c7-6d06-4474-88a2-0c9b8780974e","2023-12-28T13:40:52.138+00:00",[],{"title":1714},{"VI":1715},"Optical Oceanography Laboratory, College of Marine Science, University of South Florida, 140 7th Avenue S, MSL119, St. Petersburg, FL 33701, USA",{"title":1717},{"VI":1718},"Chuanmin Hu",{"id":1720,"sortIndex":111,"researcher":26,"roles":1721,"affiliations":1722,"properties":1731},"8c38a2d1-598b-4b1d-9c59-ba73bba82c68",[852],[1723],{"id":26,"sortIndex":36,"affiliation":1724,"properties":26},{"id":1725,"createTime":1726,"updateTime":1726,"relativeEntities":1727,"slug":26,"properties":1728,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"974b7687-a4ea-48bf-9e81-8efbe22ccdaa","2023-12-28T13:40:52.129+00:00",[],{"title":1729},{"VI":1730},"Rosenstiel School of Marine and Atmospheric Sciences, University of Miami 4600 Rickenbacker Causeway, Miami, FL 33149-1098, USA",{"title":1732},{"VI":1733},"Vassiliki H. Kourafalou",{"id":1735,"sortIndex":114,"researcher":26,"roles":1736,"affiliations":1737,"properties":1748},"f4bf1b48-6ba4-4dd3-b756-98e91f969c37",[852],[1738],{"id":26,"sortIndex":36,"affiliation":1739,"properties":26},{"id":1740,"createTime":1741,"updateTime":1742,"relativeEntities":1743,"slug":1744,"properties":1745,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"05a974fd-2fd5-4b62-8cc5-0055d68493e6","2023-12-28T13:40:52.095+00:00","2025-06-11T18:49:14.086+00:00",[],"Center-for-Ocean-Atmospheric-Prediction-Studies-Florida-State-University-2000-Levy-Avenue-Building-A-Suite-292-Tallahassee-FL-32306-2741-USA",{"title":1746},{"VI":1747},"Center for Ocean-Atmospheric Prediction Studies, Florida State University, 2000 Levy Avenue, Building A, Suite 292, Tallahassee, FL 32306-2741, USA",{"title":1749},{"VI":1750},"Dmitry S. Dukhovskoy",{"id":1752,"sortIndex":59,"researcher":26,"roles":1753,"affiliations":1754,"properties":1760},"8045b1d6-4ee2-4358-9731-2afdfdf2892b",[852],[1755],{"id":26,"sortIndex":36,"affiliation":1756,"properties":26},{"id":1740,"createTime":1741,"updateTime":1742,"relativeEntities":1757,"slug":1744,"properties":1758,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1759},{"VI":1747},{"title":1761},{"VI":1762},"Eric P. Chassignet",{"id":1764,"sortIndex":36,"researcher":26,"roles":1765,"affiliations":1766,"properties":1772},"0ae5281c-0073-4356-b68e-6ffd7d5b3d7a",[852],[1767],{"id":26,"sortIndex":36,"affiliation":1768,"properties":26},{"id":1740,"createTime":1741,"updateTime":1742,"relativeEntities":1769,"slug":1744,"properties":1770,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1771},{"VI":1747},{"title":1773},{"VI":1774},"Hannah R. Hiester",{"id":1776,"sortIndex":115,"researcher":26,"roles":1777,"affiliations":1778,"properties":1784},"b524c177-b276-4f24-add2-432c983abe37",[852],[1779],{"id":26,"sortIndex":36,"affiliation":1780,"properties":26},{"id":1740,"createTime":1741,"updateTime":1742,"relativeEntities":1781,"slug":1744,"properties":1782,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1783},{"VI":1747},{"title":1785},{"VI":1786},"Steven L. Morey",{"url":1702,"publisher":1788,"properties":1802},{"id":659,"createTime":660,"updateTime":661,"relativeEntities":1789,"slug":663,"properties":1790,"entityType":24,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36,"subjectFields":1793,"manageAffiliations":1794,"indexDatabases":1795,"url":26,"thumbnailPath":26,"statistic":26,"gsStatistic":26,"type":26,"analyzePriority":26},[],{"issn":1791,"title":1792},{"VOID":666},{"EN":668},[],[],[1796],{"id":673,"indexDatabase":1797,"url":686,"indexYears":687,"academicFieldIds":26,"indexDatabaseRanking":688},{"id":675,"createTime":676,"updateTime":677,"relativeEntities":1798,"label":1799,"description":1800,"key":683,"publicationTags":1801,"standard":26},[],{"EN":680,"VI":680},{"EN":680,"VI":682},[685],{"volume":1803,"pages":1804},{"VOID":896},{"VOID":1805},"232-250"]