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Journal of Medicine and Pharmacy","Tạp chí Y Dược học Cần Thơ",{"EN":487,"VI":488},"\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>",{"VOID":490},"wcQ1uqwAAAAJ","2023-05-30T08:17:21.868+00:00",[],[494],{"id":495,"createTime":28,"updateTime":28,"relativeEntities":496,"slug":28,"properties":497,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":507,"parentIds":508,"statistic":28},"6413896b-eca9-442b-a73f-182a58a0ce40",[],{"title":498,"address":501,"country":504,"abbreviation":505},{"EN":499,"VI":500},"Can Tho University of Medicine and Pharmacy","Trường Đại học Y Dược Cần Thơ",{"EN":502,"VI":503},"No 179, Nguyen Van Cu street, An Khanh ward, Ninh Kieu district, Can Tho city, Vietnam","Số 179, đường Nguyễn Văn Cừ, phường An Khánh, quận Ninh Kiều, thành phố Cần Thơ, Việt Nam",{"VOID":15},{"VOID":506},"ctump","http:\u002F\u002Fwww.ctump.edu.vn\u002F",[],[],"https:\u002F\u002Ftapchi.ctump.edu.vn\u002Findex.php\u002Fctump",{"impactFactor":32,"impactFactorByYear":512,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":514,"totalPublicationByYear":515,"totalCitation":520,"totalCitationByYear":521,"totalCitationPerPublication":108,"totalCitationPerPublicationByYear":523,"hindexLast5Year":45,"hindex":45},{"2022":513,"2023":111,"2024":106},0.01,1556,{"2020":47,"2021":516,"2022":517,"2023":518,"2024":519,"2025":122},57,306,801,358,161,{"2021":146,"2022":280,"2023":522},99,{"2021":524,"2022":318,"2023":104},0.23,{"impactFactor":28,"impactFactorByYear":28,"i10Index":123,"i10IndexLast5Year":123,"totalPublication":526,"totalPublicationByYear":527,"totalCitation":526,"totalCitationByYear":528,"totalCitationPerPublication":40,"totalCitationPerPublicationByYear":531,"hindexLast5Year":49,"hindex":49},476,{"0":205,"2019":123,"2021":139,"2022":459,"2023":451,"2024":357,"2025":49,"2026":48},{"2021":42,"2022":123,"2023":161,"2024":529,"2025":360,"2026":530},136,83,{"2021":105,"2022":513,"2023":532,"2024":127,"2025":533,"2026":534},0.62,25.43,13.83,{"id":536,"createTime":537,"updateTime":382,"relativeEntities":538,"slug":539,"properties":540,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":552,"translateLanguages":28,"viewCount":133,"subjectFields":553,"manageAffiliations":554,"indexDatabases":555,"url":556,"thumbnailPath":557,"statistic":558,"gsStatistic":594,"type":55,"analyzePriority":28},"6984a56a-db70-403b-9cc4-4013e1ceaffa","2023-05-09T06:47:40.346+00:00",[],"T%E1%BA%A1p%20ch%C3%AD%20Nghi%C3%AAn%20c%E1%BB%A9u%20n%C6%B0%E1%BB%9Bc%20ngo%C3%A0i",{"country":541,"issn":542,"title":544,"introduce":547,"gsId":550},{"VOID":15},{"VOID":543},"25252445",{"EN":545,"VI":546},"VNU Journal of Foreign Studies","Tạp chí Nghiên cứu nước ngoài",{"EN":548,"VI":549},"{\"ops\":[{\"insert\":\"\\n\\nThe \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science\"},{\"insert\":\"\\n was established in 1985 for the publication of national and international research papers in all fields of natural sciences and technology, social sciences and humanities. 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However, the regulation of wall loosening during stomatal movement is poorly understood. VfEXPA1 is an α-expansin gene cloned from Vicia faba epidermal strips. Expression of VfEXPA1 is regulated by darkness and submergence, and is not affected by light and abscisic acid (ABA). In situ hybridization showed that VfEXPA1 is expressed primarily in the guard cells. Overexpression of VfEXPA1 in transgenic tobacco accelerated light-induced stomatal opening, and increased both transpiration and photosynthetic rates under favorable growth conditions. Our results indicate the guard cell-expressed expansin VfEXPA1 plays an important role in regulation of stomatal opening.",{"EN":943},"An α-expansin, VfEXPA1, is involved in regulation of stomatal movement in Vicia faba L.",{"VOID":945},"Schroeder J I, Allen G J, Hugouvieux V, et al. Guard cell signal transduction. Annu Rev Plant Physiol Plant Mol Biol, 2001, 52: 627–658\nAssmann S M. Signal transduction in guard cells. Annu Rev Cell Biol, 1993, 9: 345–375\nFranks P J, Buckley T N, Shope J C, et al. Guard cell volume and pressure measured concurrently by confocal microscopy and the cell pressure probe. Plant Physiol, 2001, 125: 1577–1584\nRaschke K, Dickerson M. Changes in shape and volume of guard cells during stomatal movement. Plant Res, 1973, 1972: 149–153\nCosgrove D J. Growth of the plant cell wall. Nat Rev Mol Cell Biol, 2005, 6: 850–861\nMcQueen-Mason S, Durachko D M, Cosgrove D J. Two endogenous proteins that induce cell wall extension in plants. Plant Cell, 1992, 4: 1425–1433\nCosgrove D. Characterization of long-term extension of isolated cell walls from growing cucumber hypocotyls. Planta, 1989, 177: 121–130\nSampedro J, Cosgrove D J. The expansin superfamily. Genome Biol, 2005, 6: Article 242\nLi L C, Bedinger P A, Volk C, et al. Purification and characterization of four {beta}-expansins (zea m 1 isoforms) from maize pollen. Plant Physiol, 2003, 132: 2073–2085\nMcQueen-Mason S, Cosgrove D J. Disruption of hydrogen bonding between plant cell wall polymers by proteins that induce wall extension. Proc Natl Acad Sci USA, 1994, 91: 6574–6578\nMcQueen-Mason S J, Cosgrove D J. Expansin mode of action on cell walls (analysis of wall hydrolysis, stress relaxation, and binding). Plant Physiol, 1995, 107: 87–100\nLee D K, Ahn J H, Song S K, et al. Expression of an expansin gene is correlated with root elongation in soybean. Plant Physiol, 2003, 131: 985–997\nChoi D, Lee Y, Cho H-T, et al. Regulation of expansin gene expression affects growth and development in transgenic rice plants. Plant Cell, 2003, 15: 1386–1398\nPien S, Wyrzykowska J, McQueen-Mason S, et al. From the cover: Local expression of expansin induces the entire process of leaf development and modifies leaf shape. Proc Natl Acad Sci USA, 2001, 98: 11812–11817\nKalamaki M S, Powell A L T, Struijs K, et al. Transgenic overexpression of expansin influences particle size distribution and improves viscosity of tomato juice and paste. J Agric Food Chem, 2003, 51: 7465–7471\nBrummell D A, Harpster M H, Civello P M, et al. Modification of expansin protein abundance in tomato fruit alters softening and cell wall polymer metabolism during ripening. Plant Cell, 1999, 11: 2203–2216\nCho H-T, Cosgrove D J. From the cover: Altered expression of expansin modulates leaf growth and pedicel abscission in Arabidopsis thaliana. Proc Natl Acad Sci USA, 2000, 97: 9783–9788\nCosgrove D J, Bedinger P, Durachko D M. Group I allergens of grass pollen as cell wall-loosening agents. Proc Natl Acad Sci USA, 1997, 94: 6559–6564\nCosgrove D. New genes and new biological roles for expansins. Curr Opin Plant Biol, 2000, 3: 73–78\nZhang X Q, Wei P C, Xiong Y M, et al. Overexpression of the Arabidopsis α-expansin gene atexpa accelerates stomatal opening by decreasing the volumetric elastic modulus. Plant Cell Rep, 2010, 30: 27–36\nJefferson R, Kavanaugh T, Bevan M. Gus fusion: β-glucuronidase as a sensitive and versatile gene fusion marker in higher plants. EMBO J, 1987, 6: 901–903\nBerger D, Altmann T. A subtilisin-like serine protease involved in the regulation of stomatal density and distribution in Arabidopsis thaliana. Genes Dev, 2000, 14: 1119–1131\nCho H-T, Kende H. Tissue localization of expansins in deepwater rice. Plant J, 1998, 15: 805–812\nCho H T, Kende H. Expression of expansin genes is correlated with growth in deepwater rice. Plant Cell, 1997, 9: 1661–1671\nLi Y, Darley C P, Ongaro V, et al. Plant expansins are a complex multigene family with an ancient evolutionary origin. Plant Physiol, 2002, 128: 854–864\nLee Y, Choi D, Kende H. Expansins: Ever-expanding numbers and functions. Curr Opin Plant Biol, 2001, 4: 527–532\nLee Y, Kende H. Expression of alpha-expansin and expansin-like genes in deepwater rice. Plant Physiol, 2002, 130: 1396–1405\nReidy B, McQueen-Mason S, Nosberger J, et al. Differential expression of α- and β-expansin genes in the elongating leaf of festuca pratensis. Plant Mol Biol, 2001, 46: 491–504\nMuller B, Bourdais G, Reidy B, et al. Association of specific expansins with growth in maize leaves is maintained under environmental, genetic, and developmental sources of variation. Plant Physiol, 2007, 143: 278–290\nBoudart G, Jamet E, Rossignol M, et al. Cell wall proteins in apoplastic fluids of Arabidopsis thaliana rosettes: Identification by mass spectrometry and bioinformatics. Proteomics, 2005, 5: 212–221\nDarley C P, Forrester A M, McQueen-Mason S J. The molecular basis of plant cell wall extension. Plant Mol Biol, 2001, 47: 179–195\nJones L, Milne J L, Ashford D, et al. From the cover: Cell wall arabinan is essential for guard cell function. Proc Natl Acad Sci USA, 2003, 100: 11783–11788\nAtkinson R G, Schroder R, Hallett I C, et al. Overexpression of polygalacturonase in transgenic apple trees leads to a range of novel phenotypes involving changes in cell adhesion. Plant Physiol, 2002, 129: 122–133\nJones L, Milne J L, Ashford D, et al. A conserved functional role of pectic polymers in stomatal guard cells from a range of plant species. Planta, 2005, 221: 255–264\nWhitney S E C, Gidley M J, McQueen-Mason S J. Probing expansin action using cellulose\u002Fhemicellulose composites. Plant J, 2000, 22: 327–334\nFleming A J, McQueen-Mason S, Mandel T, et al. Induction of leaf primordia by the cell wall protein expansin. Science, 1997, 276: 1415–1418\nMajewska-Sawka A, Munster A, Rodriguez-Garcia M I. Guard cell wall: Immunocytochemical detection of polysaccharide components. J Exp Bot, 2002, 53: 1067–1079\nWhitney S E C, Gothard M G E, Mitchell J T, et al. Roles of cellulose and xyloglucan in determining the mechanical properties of primary plant cell walls. Plant Physiol, 1999, 121: 657–664\nCosgrove D J. Loosening of plant cell walls by expansins. 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novel method for microwave surface resistance measurement of high temperature superconductor thin film at multi-frequency by multimode of sapphire rod is introduced. This method has the advantages of high sensitivity and large dynamic range of the measurement. By using this method, the frequency dependent microwave surface resistance of a single piece of high temperature superconductor thin film can be characterized within one temperature cycle. This method is capable of reducing the amount of work in surface resistance measurement and providing supports to the research and the industrialization of high temperature superconductor thin film.",{"EN":1103},"A novel method for the measurement of frequency-character of surface resistance of HTS thin film",{"VOID":1105},"Charles W, Shen Z Y, Pang P, et al. 5 GHz high temperature superconductor resonators with high Q and low power dependence up to 90 K. IEEE Trans Microwave Theory Tech, 1991, 39: 1462–1467\nHashimoto T, Kobayashi Y. Two-sapphire-rod-resonator method to measure the surface resistance of high-Tc superconductor films. IEICE Trans Electron, 2004, 87: 681–687\nSaito A, Shirakawa M, Kitamura K, et al. Dependence of surface resistance in HTS thin films on a DC magnetic field. IEEE Trans Appl Supercond, 2005, 15: 3692–3695\nHashimoto T, Kabayashi Y. An image type dielectric resonator method to measure surface resistance of a high T c superconductor film. IEICE Trans Electron, 2003, 87: 30–36\nCherpak N, Barannik A, Bunyaev S, et al. Measurements of millimeter-wave surface resistance and temperature dependence of reactance of thin HTS films using quasi-optical dielectric resonator. IEEE Trans Appl Supercond, 2005, 15: 2919–2922\nJacob M, Mazierska J, Leong K, et al. Surface resistance measurements of HTS thin films using SLAO dielectric resonator. IEEE Trans Appl Supercond, 2003, 13: 2909–2912\nInternational Standard IEC 61788-7. Part 7: Electronic characteristic measurements surface resistance of superconductors at microwave frequencies, 2006: 17\nWang Y, Su H T, Huang F, et al. Measurement of YBCO thin film surface resistance using coplanar line resonator techniques from 20 MHz to 20 GHz. IEEE Trans Appl Supercond, 2007, 17: 3632–3639\nHashimoto T, Kabayashi Y. Frequency dependence measurements of surface resistance of superconductors using four modes in a sapphire rod resonator. IEICE Trans Electron, 2003, 86: 1721–1728\nZhang Y M, Luo Z Y, Yang K, et al. Measurement method of microwave surface resistance of high Tc superconductive thin films. 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improved coupling reaction between aromatic ring and acetylene triple bond catalyzed by palladium (0) catalyses for the preparation of pyridylethynyl benzonitrile compounds is described. Efforts were made to improve the reaction by changing different reaction conditions and it was found that the solvent is one important factor in this situation.",{"EN":1233},"An improved coupling reaction for the preparation of pyridylethynyl benzonitrile compounds",{"VOID":1235},"Micetich, R. G., Abramovitch, R. A., The Chemistry of Heterocyclic Compounds, Vol. 14, Supplement Part 2, New York: Wiley, 1974.\nChambers, R. J., Marfat, A., Cheng, J. B. et al., Biarylcarboxamide inhibitors of phosphodiesterase IV and tumor necrosis factor-alpha, Bioorg. Med. Chem. Lett., 1997, 7: 739.\nBoyd, E. C., Eaton, M. A. W., Warrellow, G. J., Tri-substituent phenyl derivatives as phosphodiesterase IV inhibitors and process for this preparation, PCT Int. Appl., WO94 10, 118.\nMaini, R. N., Elliott, M. J., Brennan, F. M. et al., Benificial effects of tumor necrosis factor-alpha (TNF-α) blockade in rheumatoid arthritis (RA), Clin. Exp. Immunol., 1995, 101: 207.\nFeldmann, M., Brennan, F. M., Eliott, M. J. et al., Tnf-alpha as a therapeutic target in rheumatoid-arthritis, Circ. Shock, 1994, 43: 179.\nEvans, O. R., Xiong, R. G., Wang, Z. Y. et al., Crystal engineering of acentric diamondoid metal-organic coordination networks, Angew. Chem. Int. Ed., 1999, 38: 536.\nService, R. F., Making molecular filters more reactive, Science, 1994, 265: 1363.\nAmato, I., Physics—Catching the wave of a new accelerator, Science, 1993, 259: 765.\nSubramanian, S., Zaworotko, M. J., Porous solids by design: [Zn(4,4′ -bpy)2(SiF6)]n ·xDMF, a single framework octahedral coordination polymer with large square channels, Angew. Chem. Int. Ed., 1995, 34: 2127.\nVenkaraman, D., Gardner, G. B., Lee, S. et al., Zeolite-like behavior of a coordination network, J. Am. Chem. Soc., 1995, 117: 11600.\nMoore, J. S., Hollow organic solids, Nature, 1995, 374: 495.\nWard, M. D., Designer zeolites, Nature, 1995, 374: 764.\nWard, M. D., Metal-metal iMteractions in binuclear complexes exhibiting mixed valance: Molecular wires and switches, Chem. Soc. Rev., 1995, 121.\nSauvage, J. P., Collin, J. P., Chambron, J. C. et al., Ruthenium(II) and osmium(II) bis(terpyridine) complexes in covalently-linked multicomponent systems: Synthesis, electrochemical behavior, absorption spectra, and photochemical and photophysical properties, Chem. Rev., 1994, 94: 993.\nGopel, W., Ziegler, Ch., Nanostructures Based on Molecular Materials, Veinheim: VCH, 1992.\nHerrmann, W. A., Bohm, V. P. W., Reisinger, C. P., Application of palladacycles in heck type reactions, J. Orgnomet. Chem., 1999, 576: 23.\nShibasaki, M., Vogl, E. M., The palladium-catalysed arylation and vinylation of alkenes—Enantioselective fashion, J. Orgnomet. 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new star-shaped oligoelectrolyte (TEFCOONa) with triphenylamine as the core, acetylene as linkage and anionic fluorenes as arms was obtained and used for direct imaging in living PANC-1 cells. Because of the hydrophobic conjugated groups of the oligoelectrolyte, TEFCOONa can form nanospheres with an average diameter of ∼75 nm in 10 mmol\u002FL PBS. These nanospheres possess a relatively high absolute quantum yield (16.5% in PBS), low cytotoxicity and can penetrate into the nucleus through the cytoplasm, which is essential for living cellular imaging. Collectively, these results validate our rational design of conjugated oligoelectrolyte and even hyper branched polymers-copolyelectrolyte as effective nanovectors for bioimaging and other clinical applications.",{"EN":1326},"Star-shaped conjugated oligoelectrolyte for bioimaging in living cells",{"VOID":1328},"Xia F, Heeger A J, Plaxco K W, et al. On the binding of cationic, water-soluble conjugated polymers to DNA: Electrostatic and hydrophobic interactions. J Am Chem Soc, 2010, 132: 1252–1254\nSatrijo A, Swager T M. Anthryl-doped conjugated polyelectrolytes as aggregation-based sensors for nonquenching multicationic. J Am Chem Soc, 2007, 129: 16020–16028\nMcQuade D T, Hegedus A H, Swager T M. Signal amplification of a “turn-on” sensor: Harvesting the light captured by a conjugated polymer. J Am Chem Soc, 2000, 122: 12389–12390\nHo H A, Leclerc M. Optical sensors based on hybrid aptamer\u002Fconjugated polymer complexes. J Am Chem Soc, 2004, 126: 1384–1387\nHo H A, Leclerc M. New colorimetric and fluorometric chemosensor based on a cationic polythiophene derivative for iodide-specific detection. J Am Chem Soc, 2003, 125: 4412–4413\nDore K, Boudreau D, Leclerc M. Fluorescent polymeric transducer for the rapid, simple, and specific detection of nucleic acids at the zeptomole level. J Am Chem Soc, 2004, 126: 4240–4244\nZhang Z Y, Fan Q L, Huang W, et al. Highly selective anionic counterion-based fluorescent sensor for Hg2+ by grafted conjugated polyelectrolytes. Macromol Rapid Commun, 2010, 31: 2160–2165\nXue W X, Zhang D Q, Zhu D B, et al. Colorimetric detection of glucose and an assay for acetylcholinesterase with amine-terminated polydiacetylene vesicles. Chin Sci Bull, 2011, 56: 1877–1883\nFan Q L, Huang W, Zhou Y, et al. Water-soluble cationic poly(p-phenyleneethynylene)s (PPEs): Effects of acidity and ionic strength on optical behavior. Macromolecules, 2005, 38: 2927–2936\nKim I K, Shin H, Bunz U H F, et al. Use of a folate-PPE conjugate to image cancer cells in vitro. Bio Chem, 2007, 18: 815–820\nPu K Y, Li K, Liu B, et al. Fluorescent single-molecular core-shell nanospheres of hyperbranched conjugated polyelectrolyte for live-cell imaging. Chem Mater, 2009, 21: 3816–3822\nWang G, Lai Y H, Liu B, et al. Star-shaped glycosylated conjugated oligomer for two-photon fluorescence imaging of live cells. Chem Mater, 2011, 23: 4428–4434\nSchacher F, Walther A, Muller A H E, et al. Multicompartment core micelles of triblock terpolymers in organic media. Macromolecules, 2009, 42: 3540–3548\nLai W Y, Huang W, Zhou R, et al. Monodisperse six-armed triazatruxenes: Microwave-enhanced synthesis and highly efficient pure-deep-blue electroluminescence. Macromolecules, 2006, 39: 3707–3709\nLai W Y, Huang W, He Q Y, et al. Kinked Star-shaped fluorene\u002Ftriazatruxene co-oligomer hybrids with enhanced functional froperties for high-performance, solution-processed, blue organic light-emitting diodes. Adv Funct Mater, 2008, 18: 265–276\nLo S C, Burn P L. Development of hyperbranched polymers polymers: Macromolecules for use in organic light-emitting diodes and solar cells. Chem Rev, 2007, 107: 1097–1166\nLi K, Pu K Y, Liu B. Phalloidin-functionalized hyperbranched conjugated polyelectrolyte for filamentous actin imaging in living Hela cells. Chem Mater, 2011, 23: 2113–2119\nGaylord B S, Heeger A J, Bazan G C. DNA detection using water-soluble conjugated polymers and peptide nucleic acid probes. Proc Natl Acad Sci USA, 2002, 99: 10954–10957\nPawlicki M, Collins H A, Anderson H L, et al. Two-photon absorption and the design of two-photon dyes. Angew Chem Int Ed, 2009, 48: 3244–3266\nTerenziani F, Katan C, Badaeva E, et al. Enhanced two-photon absorption of organic chromophores: Theoretical and experimental assessments. Adv Mater, 2008, 20: 4641–4678\nHe G S, Tan L S, Zheng Q, et al. Multiphoton absorbing materials: Molecular designs, characterizations, and applications. 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approved by IMA-CNMMN (2004-042a), was discovered in the Bunan quartz vein-type gold deposit in the gold district of East Shandong Peninsula. The mineral occurs in high grade Au-Ag-Cu ores, coexisting with galena, chalcopyrite, hessite, electrum, unnamed Ag6TeS2 and Ag16FeBiTe3S8, enclosed and replaced by native silver and acanthite. In the reflected light microscope, the mineral has light gray color, indistinguishable anistropism and hardness around 2–3. The color indices of chenguodaite relative to ICE C illuminator are: x=0.3027, y=0.3076, Y=25.78%,-λd=474 nm, Pe=3.68%, similar to those of canfieldite. The average chemical composition from 16 microprobe analyses is Ag8.97Fe1.00Te1.99S4.04, idealized to Ag9FeTe2S4. The polycrystalline X-ray diffraction of chenguodaite by Gandolfi camera and synchrotron oscillation photography results in 67 reflections with the 12 strongest being (relative intensity in bracket): 6.742(69), 6.416(39), 5.951(33), 3.265(100), 2.981(24), 2.649(22), 2.25(24), 2.188(71), 2.142(22), 2.123(31), 2.044(23), 1.949(33), which are indexed to a primitive orthorhombic cell with a=12.769 (2) Å, b= 14.814(2) Å, c= 16.233 (1) Å, V= 3070.6 Å3, Z = 9, Dcal.=6.85 g\u002Fcm3. The name is for the late Prof. Chen Guoda, a famous Chinese geologist and the founder of Diwa-Geodepression theory of tectonics.",{"EN":1456},"Chenguodaite (Ag9FeTe2S4): a new tellurosulfide mineral from the gold district of East Shandong Peninsula, China",{"VOID":1458},"Criddle A J, Chisholm J E, Stanley C J. Cervelleite, Ag4TeS, a new mineral from the Bambolla mine, Mexico, and description of a photo-chemical reaction involving cervelleite, acanthite and hessite. Eur J Mineral, 1989, 1: 371–380\nStanley C J, Criddle A J, Chisholm J E. Benleonardite, a new mineral from the Bambolla mine, Moctezuma, Sonara, Mexico. Mineral Mag, 1986, 50: 681–686\nSandomirskaya S M, Arifulov C K, Botova M M, et al. Tsnigriite Ag9SbTe3(S,Se)3: a new mineral (in Russian). Zapiski Vses Mineral Obsch, 1992, 121(5): 95–101\nSoeda A, Watanabe M, Hoshino K. Mineralogy of tellurium-bearing canfieldite from the Tsumo mine, SW Japan and its implications for ore genesis. N Jb Mineral Abh, 1984, 150(1): 11–23\nHarris D C, Owens D R. A tellurium-bearing canfieldite from Revelstoke, B.C. Canad Mineral, 1971, 10: 895–898\nKarup-Møller S, Makovicky E, Pilström G. Mineralogy of sulphosalt zone at the Långdal deposit, Boliden district, Northern Sweden. N Jb Mineral Abh, 1989, 160(3): 299–327\nLi Y, Qing C K. A preliminary study on several silver minerals in silver-bearing nonferrous deposits in China (in Chinese). Acta Mineral Sin, 1999, 19(4): 21–27\nGu X P, Watanabe M, Hoshino K, et al. New find of Silver tellurosulphides from the Funan Gold Deposit, East Shandong, China. Eur J Miner, 2003, 15: 147–155\nOhsumi K, Hagiya K, Uchida M, et al. Development of a microarea diffraction system by polychromatic synchrotron radiation with the Laue method. Rev Sci Instrum, 1995, 66: 1448–1450\nLi G W, Shi N C, Ma Z S, et al. A new method for powder-like diffractograms of small single crystals using a SMART APEX CCD detector (in Chinese). Acta Mineral Sin, 2005, 25(1): 9–14",{"VOID":1460},"10.1007\u002Fs11434-008-0295-4","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11434-008-0295-4",[1463,1487,1502,1515,1528,1543,1556,1569,1584],{"id":1464,"sortIndex":32,"researcher":28,"roles":1465,"affiliations":1466,"properties":1484,"displayName":1486,"givenName":28,"familyName":28},"1b4ed308-797b-48d7-a003-724c2d6d9578",[954],[1467,1475],{"id":1468,"sortIndex":32,"affiliation":1469,"properties":28},"168a74fe-582c-483c-a938-de8ec3ec8914",{"id":1468,"createTime":28,"updateTime":28,"relativeEntities":1470,"slug":28,"properties":1471,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1474,"statistic":28},[],{"title":1472},{"VI":1473},"Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 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to the nonlinear theory, the experiments have been conducted on sample ECG (electrocardiogram) signals of healthy human beings, coronary heart disease patients and adult canines. On the basis of the analyses of the power spectra, the computation of the correlation dimension and the Lyapunov exponent to a large number of ECG signals, the following conclusions are shown: through the comparative research, (1) the analyses of the power spectra, the computation of the correlation dimension and the Lyapunov exponent to the ECG signals reflect the whole dynamic characteristics of the hearts, and they may become a new method of researching ECG quantitatively to an early diagnose of heart disease. (2) Under normal physiological conditions the cardiac activities are chaotic, while under pathologic conditions the cardiac activities approach regularity. (3) On the basis of the comparative research of human beings and canines, it is revealed that chaos may be a quantitative index to measure the evolution of species. This conclusion would supply a new cut-in point to elaborate the Darwin theory, and it would enable us to explain the life theory renewably using the basic principle of nonlinear theory.",{"EN":1629},"Relation of chaos activity characteristics of the cardiac system with the evolution of species",{"VOID":1631},"Darwin, C., On the Origin of Species by Means of Natural Selection or the Preservation of Favored Races in the Struggle for Life, London: John Murray, 1859, 10–39.\nLi Nan, Evolution Theory Tutorial (in Chiense), Beijing: Higher Education Press, 1990, 353–355, 153–158.\nBrennan, M., Palaniswami, M., Kamen, P., Do existing measures of Poincare plot geometry reflect nonlinear features of heart rate variability? IEEE Transactions on Biomedical Engineering, 2001, 48(11): 1342.\nMoody, G. B., Mark, R. G., Goldberger, A. L., PhysioNet: A web-based resource for the study of physiologic signals, IEEE Engineering in Medicine and Biology Magazine, 2001, 20(3): 70.\nCoveney, P., Highfield, R., The Arrow of Time, London: W H Allen, 1990, 121.\nKobayashi, M., Musha, T., 1\u002Ff Fluctuation of heartbeat period, IEEE Trans. Biomed. Eng., 1982, 29: 456.\nBabloyantz, A., Destexhe, A., Low-dimensional chaos in an instance of epilepsy, Proc. Natl. Ncad. Sci., 1986, 83: 3513.\nGoldberger, A. L., Fractal mechanisms in the electrophysiology of the heart, IEEE Eng. Med. Biol., 1992, 11(2): 47.\nGlass, L., Hunter, P., McCulloch, A., Theory of Heart, Berlin: Springer-Verlag, 1991: 583–602.\nGoldberger, A. L., West, B. J., Rigney, D. R., Chaos and fractals in human physiology, Scientific American, 1990, 262: 42.\nWang Xingyuan, Gu Shusheng, Nonlinear dynamic research for cardioelectrical information of dynamic physiology and pathology, Chinese Journal of Biomedical Engineering (in Chinese with English abstract), 2000, 19(4): 397.\nGrassberger, P., Procaccia, I., Characterization of strange attractors, Phys. Rev. Lett., 1983, 50: 346.\nPackard, N. H., Crutchfield, J. P., Farmer, J. D. et al., Geometry from a time series, Phys. Rev. Lett., 1980, 45: 712.\nTakens, F., Detecting strange attractors in turbulence, Lect. Notes in Math., 1981, 898: 366.\nWelch, P. D., The use of fast Fourier transform for the estimation of power spectra: A method based on time averaging over short modified periodograms, IEEE Trans. Audio and Electroacoust. 1967, 15(2): 70.\nWolf, A., Swift, J. B., Swinney, H. L. et al., Determining Lyapunov exponents from a time series, Physica, 1985, 16D: 285.\nBrandstater, A., Swinney, H. L., Strange attractors in weakly turbulent Couette-Taylor flow, Phys. Rev. A, 1987, 35: 2207.\nShaw, R., Strange attractors, chaotic behavior, and information flow, Z. Naturf. 36a, 1981: 80.",{"VOID":1633},"10.1360\u002F02tb9442","https:\u002F\u002Fwww.scichina.com\u002Fky\u002F0224\u002Fky2042.stm",[1636],{"id":1637,"sortIndex":32,"researcher":28,"roles":1638,"affiliations":1639,"properties":1648,"displayName":1650,"givenName":28,"familyName":28},"b575cf88-ae5b-4687-8645-491077205357",[954],[1640],{"id":1641,"sortIndex":32,"affiliation":1642,"properties":28},"56ab5a69-9103-4ccd-916f-c661a34d9993",{"id":1641,"createTime":28,"updateTime":28,"relativeEntities":1643,"slug":28,"properties":1644,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1647,"statistic":28},[],{"title":1645},{"VI":1646},"Dalian University of Technology, School of Electronic and Information Engineering, Dalian, China",[],{"title":1649},{"VI":1650},"Xingyuan Wang",{"url":1634,"publisher":1652,"properties":1665},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1653,"slug":872,"properties":1654,"entityType":25,"verifyStatus":878,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1657,"manageAffiliations":1658,"indexDatabases":1659,"url":28,"thumbnailPath":28,"statistic":1660,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1655,"title":1656},{"VOID":875},{"EN":877},[],[],[],{"impactFactor":32,"impactFactorByYear":1661,"i10Index":884,"i10IndexLast5Year":32,"totalPublication":885,"totalPublicationByYear":1662,"totalCitation":902,"totalCitationByYear":1663,"totalCitationPerPublication":703,"totalCitationPerPublicationByYear":1664,"hindexLast5Year":206,"hindex":206},{"2012":117,"2013":117,"2014":319,"2015":461,"2016":117},{"1997":887,"1998":888,"1999":889,"2000":890,"2001":859,"2002":615,"2003":891,"2004":892,"2005":893,"2006":894,"2007":895,"2008":616,"2009":896,"2010":897,"2011":898,"2012":899,"2013":900,"2014":901},{"1997":429,"1998":904,"1999":701,"2000":905,"2001":906,"2002":907,"2003":908,"2004":909,"2005":910,"2006":911,"2007":912,"2008":913,"2009":914,"2010":915,"2011":916,"2012":917,"2013":918,"2014":919},{"1997":225,"1998":921,"1999":922,"2000":923,"2001":464,"2002":924,"2003":123,"2004":925,"2005":926,"2006":703,"2007":927,"2008":228,"2009":193,"2010":928,"2011":929,"2012":441,"2013":930,"2014":925},{"pages":1666,"volume":1668},{"VOID":1667},"2042-2048",{"VOID":1669},"47","2002-12-01",2002,[],{"id":1674,"createTime":1675,"updateTime":1676,"relativeEntities":1677,"slug":1678,"properties":1679,"entityType":948,"verifyStatus":26,"verifyTime":1676,"verifyNote":1108,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1688,"fullTextUrl":28,"authors":1689,"publicationType":1069,"publisherRelationship":1744,"citationCount":28,"citationInfo":28,"publishDate":1762,"publishYear":1446,"citationAnalyzeStatus":878,"lastCitationAnalyze":28,"indexDatabases":1763,"openAccess":28,"references":28,"isForceReanalyzing":1092},"00531d3c-a8b2-481d-9ace-6604e43bc863","2023-12-11T01:53:15.705+00:00","2025-01-13T15:29:24.280+00:00",[],"Seasonal-variation-of-size-fractionated-phytoplankton-in-the-Pearl-River-estuary",{"abstract":1680,"title":1682,"references":1684,"doi":1686},{"EN":1681},"To investigate the dynamics of phytoplankton size structure in the Pearl River estuary, concentrations of size-fractionated chlorophyll a (Chl a) were determined during four cruises carried out in 2008 and 2010. The distribution of Chl a in this geographical location showed a high degree of temporal variation. Chl a concentrations were highest in autumn, approximately three times higher than those in summer and winter. Microphytoplankton was the dominant contributor, accounting for 66.9% of the Chl a concentration in autumn 2008. In summer and spring 2008, nano-sized cells dominated the phytoplankton population throughout the study region. During the winter cruise, two different areas of water were found, characterized by (1) low salinity and high nutrient content and (2) high salinity and low nutrient content; nano- and picophytoplankton co-dominated the first area, while microphytoplankton dominated the second. It is arguable that grazing could have played a role in determining phytoplankton community size structure in winter. Nutrient concentrations were assumed not to limit phytoplankton growth during the investigation period. Size-differential capacity in competing for the resources available under different hydrodynamic conditions seemed to be the major factor in determining seasonal variation in the structure of the phytoplankton communities. High N:P ratios in the Pearl River estuary had major implications for nutrient pollution control. Our results indicated that studies of phytoplankton size structure provide greater insight into phytoplankton dynamics and are necessary to better manage water quality in the Pearl River estuary.",{"EN":1683},"Seasonal variation of size-fractionated phytoplankton in the Pearl River estuary",{"VOID":1685},"Cloern J E, Dufford R. Phytoplankton community ecology: Principles applied in San Francisco Bay. Mar Ecol Prog Ser, 2005, 285: 11–28\nButrón A, Iriarte A, Madariage I. Size-fractionated phytoplankton biomass, primary production and respiration in the Nervión-Ibaizabal estuary: A comparison with other nearshore coastal and estuarine ecosystems from the Bay of Biscay. Cont Shelf Res, 2009, 29: 1088–1102\nFu M Z, Wang Z L, Li Y, et al. Phytoplankton biomass size structure and its regulation in the Southern Yellow Sea (China): Seasonal variability. Cont Shelf Res, 2009, 29: 2178–2194\nMalone T C. Algal size. In: Morris I, ed. The Physiological Ecology of Phytoplankton. London: Blackwell Scientific Publications, 1980. 433–465\nPlatt T, Silver W. Ecology, physiology, allometry and dimensionality. J Theor Biol, 1981, 93: 855–860\nTamigneaux E, Legendre L, Klein B, et al. Seasonal dynamics and potential fate of size-fractionated phytoplankton in a temperate nearshore environment (Western Gulf of St. Lawrence, Canada). Estuar Coast Shelf S, 1999, 48: 253–269\nRaven J A. The twelfth Transley Lecture. Small is beautiful: The picophytoplankton. Funct Ecol, 1998, 12: 503–513\nFinkel Z V, Irwin A J, Schofield O. Resource limitation alters the 3\u002F4 size scaling of metabolic rates in phytoplankton. 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Dynamics of nutrients and phytoplankton biomass in the Pearl River estuary and adjacent waters of Hong Kong during summer: Preliminary evidence for phosphorus and silicon limitation. Mar Ecol Prog Ser, 2000, 194: 295–305\nMurphy L S, Haugen E M. The distribution and abundance of phototrophic ultraplankton in the North Atlantic. Limnol Oceanogr, 1985, 30: 47–58\nMarañón E, Berhenfeld M J, González N, et al. High variability of primary production in oligotrophic waters of the Atlantic Ocean: Uncoupling from phytoplankton biomass and size structure. Mar Ecol Prog Ser, 2003, 257: 1–11\nRiegman R, Kuipers B R, Noordeloos A A M, et al. Size-differential control of phytoplankton and the structure of plankton communities. Netherlands J Sea Res, 1993, 31: 255–265\nRodríguez J, Tintore J, Allen J T, et al. Mesoscale vertical motion and the size structure of phytoplankton in the ocean. Nature, 2001, 410: 360–363\nWong M H, Cheung K C. China Estuarine Systems: Pearl River Estuary and Mirs Bay. In: Smith, S V, Dupra V, Crossland M, et al, eds. Estuarine Systems of the South China Sea Region: Carbon, Nitrogen and Phosphorus. LOCIZ Reports and Studies No.14, LOICZ, Texel, The Netherlands, 2000. 7–16\nProbyn T A. Nitrogen uptake by size-fractionated phytoplankton populations on the southern Benguela upwelling system. Mar Ecol Prog Ser, 1985, 22: 249–258\nSin Y, Wetzel R L, Anderson I C. Seasonal variations of size fractionated phytoplankton along the salinity gradient in the York River Estuary, Virginia. J Plankton Res, 2000, 22: 1945–1960\nBanse K. Grazing, temporal changes of phytoplankton concentrations, and the microbial loop in the open sea. In: Falkowski P G, Woodhead A D, eds. Primary Productivity and Biogeochemical Cycles in the Sea. New York: Plenum Press, 1992. 409–440\nUye S. Impact of copepod grazing on the red-tide flagellate Chattonella antiqua. Marine Biol, 1986, 92: 35–43\nBautista B, Harris R P. Copepod gut contents, ingestion rates and grazing impact on phytoplankton in relation to size structure of zooplankton and phytoplankton during a spring bloom. Mar Ecol Prog Ser, 1992, 82: 41–50\nNejstgaard J C, Bamstedt U, Bageoien E, et al. Algal constraints on copepod grazing. Growth state, toxicity, cell size, and season as regulating factors. ICES J Mar Sci, 1995, 52: 347–357\nHansen B W, Hygum B H, Brozek M, et al. Food web interaction in a Calanus finmarchicus dominated pelagic ecosystem-A mesocosm study. J Plankton Res, 2000, 22: 569–588\nTan Y H, Huang L M, Chen Q C, et al. Seasonal variation in zooplankton composition and grazing impact on phytoplankton standing stock in the Pearl River Estuary, China. Cont Shelf Res, 2004, 24: 1949–1968\nLi K Z, Yin J Q, Huang L M, et al. Spatial and temporal variations of mesozooplankton in the Pearl River estuary, China. Estuar Coast Shelf S, 2006, 67: 543–552\nLi K Z, Yin J Q, Huang L M, et al. Study on planktonic copepods ecology in the Pearl River estuary (in Chinese). Ecol Sci, 2007, 26: 97–102\nFang H D, Zhu A J, Dong Y H, et al. Study on the variations of zooplankton community in the Pearl River Estuary in 2005–2006 (in Chinese). Taiwan Strait, 2009, 28: 30–37\nWong L Y, Chen J X, Xie H, et al. A model study of the circulation in the Pearl River Estuary (PRE) and its adjacent coastal waters: 1. Simulations and comparison with observations. J Geophys Res, 2003, 25: 1–17\nDong Y H, Cai J D, Qian H L. Nutrient Ratios and its Relationship with Phytoplankton in the Pearl River Estuary (in Chinese). Mar Sci Bull, 2009, 18: 3–10\nDai M, Li C H, Jia X P, et al. Ecological characteristics of phytoplankton in coastal area of Pearl River estuary (in Chinese). Chin J Appl Ecol, 2004, 15: 1389–1394\nTilman D. Resource competition between planktonic algae: An experimental and theoretical approach. Ecology, 1977, 58: 338–348\nLewin J C. Silicification. In: Lewin R A, ed. 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New York: Elsevier, 1990. 29–40\nHumborg C V, Ittekkot E, Cociasu A, et al. Effect of Danube River dam on Black Sea biogeochemistry and ecosystem structure. Nature, 1997, 386: 385–388\nWei H, Sun J, Moll A, et al. Phytoplankton dynamics in the Bohai Sea-observations and modeling. J Marine Syst, 2004, 44: 233–251\nKhan S, Haque M M, Arakawa O, et al. Physiological observations on a diatom Skeletonema costatum (Greville) Cleve. Bangladesh J Fisheries Res, 1998, 2: 109–118\nMunawar M, Munawar I F, Leppard G G. Early warning assays: An overview of toxicity testing with phytoplankton in the North American Great Lakes. Hydrobiologia, 1989, 188\u002F189: 237–246\nSnoeijs P, Busse S, Potapova M. The importance of diatom cell size in community analysis. J Phycol, 2002, 38: 265–272\nNayar S, Goh B P L, Chou L M. Dynamics in the size structure of Skeletonema costatum (Greville) Cleve under conditions of reduced photosynthetically available radiation in a dredged tropical estuary. J Exp Mar Biol Ecol, 2005, 318: 163–182\nSun J, Liu D Y, Zhong H, et al. A Comparison of Three Methods for Studying Phytoplankton Size Fraction (in Chinese). J Ocean Univ Qingdao, 2003, 33: 917–924",{"VOID":1687},"10.1007\u002Fs11434-013-5823-1","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11434-013-5823-1",[1690,1705,1718,1731],{"id":1691,"sortIndex":32,"researcher":28,"roles":1692,"affiliations":1693,"properties":1702,"displayName":1704,"givenName":28,"familyName":28},"ae0a8a08-d227-48c7-b2a4-d28ada55439a",[954],[1694],{"id":1695,"sortIndex":32,"affiliation":1696,"properties":28},"c2045a8f-a816-4d0a-bb6a-f68a447f3c88",{"id":1695,"createTime":28,"updateTime":28,"relativeEntities":1697,"slug":28,"properties":1698,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1701,"statistic":28},[],{"title":1699},{"VI":1700},"Research Center for Harmful Algae and Marine Biology, Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, Jinan University, Guangzhou, China",[],{"title":1703},{"VI":1704},"Li Li",{"id":1706,"sortIndex":40,"researcher":28,"roles":1707,"affiliations":1708,"properties":1715,"displayName":1717,"givenName":28,"familyName":28},"44126c76-242d-44b3-93ee-f86b031bf4a8",[954],[1709],{"id":1695,"sortIndex":32,"affiliation":1710,"properties":28},{"id":1695,"createTime":28,"updateTime":28,"relativeEntities":1711,"slug":28,"properties":1712,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1714,"statistic":28},[],{"title":1713},{"VI":1700},[],{"title":1716},{"VI":1717},"SongHui Lu",{"id":1719,"sortIndex":123,"researcher":28,"roles":1720,"affiliations":1721,"properties":1728,"displayName":1730,"givenName":28,"familyName":28},"922309b1-78d0-44a9-b302-db1a16244197",[954],[1722],{"id":1695,"sortIndex":32,"affiliation":1723,"properties":28},{"id":1695,"createTime":28,"updateTime":28,"relativeEntities":1724,"slug":28,"properties":1725,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1727,"statistic":28},[],{"title":1726},{"VI":1700},[],{"title":1729},{"VI":1730},"Tao Jiang",{"id":1732,"sortIndex":42,"researcher":28,"roles":1733,"affiliations":1734,"properties":1741,"displayName":1743,"givenName":28,"familyName":28},"467f4589-a138-4e55-b5b6-980eee394019",[954],[1735],{"id":1695,"sortIndex":32,"affiliation":1736,"properties":28},{"id":1695,"createTime":28,"updateTime":28,"relativeEntities":1737,"slug":28,"properties":1738,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1740,"statistic":28},[],{"title":1739},{"VI":1700},[],{"title":1742},{"VI":1743},"Xia Li",{"url":1688,"publisher":1745,"properties":1758},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1746,"slug":872,"properties":1747,"entityType":25,"verifyStatus":878,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":1750,"manageAffiliations":1751,"indexDatabases":1752,"url":28,"thumbnailPath":28,"statistic":1753,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1748,"title":1749},{"VOID":875},{"EN":877},[],[],[],{"impactFactor":32,"impactFactorByYear":1754,"i10Index":884,"i10IndexLast5Year":32,"totalPublication":885,"totalPublicationByYear":1755,"totalCitation":902,"totalCitationByYear":1756,"totalCitationPerPublication":703,"totalCitationPerPublicationByYear":1757,"hindexLast5Year":206,"hindex":206},{"2012":117,"2013":117,"2014":319,"2015":461,"2016":117},{"1997":887,"1998":888,"1999":889,"2000":890,"2001":859,"2002":615,"2003":891,"2004":892,"2005":893,"2006":894,"2007":895,"2008":616,"2009":896,"2010":897,"2011":898,"2012":899,"2013":900,"2014":901},{"1997":429,"1998":904,"1999":701,"2000":905,"2001":906,"2002":907,"2003":908,"2004":909,"2005":910,"2006":911,"2007":912,"2008":913,"2009":914,"2010":915,"2011":916,"2012":917,"2013":918,"2014":919},{"1997":225,"1998":921,"1999":922,"2000":923,"2001":464,"2002":924,"2003":123,"2004":925,"2005":926,"2006":703,"2007":927,"2008":228,"2009":193,"2010":928,"2011":929,"2012":441,"2013":930,"2014":925},{"pages":1759,"volume":1761},{"VOID":1760},"2303-2314",{"VOID":1444},"2013-07-18",[],{"id":1765,"createTime":1766,"updateTime":1767,"relativeEntities":1768,"slug":1769,"properties":1770,"entityType":948,"verifyStatus":26,"verifyTime":1767,"verifyNote":1108,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1779,"fullTextUrl":28,"authors":1780,"publicationType":1069,"publisherRelationship":1835,"citationCount":28,"citationInfo":28,"publishDate":1854,"publishYear":1855,"citationAnalyzeStatus":878,"lastCitationAnalyze":28,"indexDatabases":1856,"openAccess":28,"references":28,"isForceReanalyzing":1092},"00666f84-cdec-41f3-8a2d-4591e778e980","2024-01-05T15:10:52.884+00:00","2024-12-17T08:36:15.169+00:00",[],"The-effect-of-land-use-structure-on-the-distribution-of-soil-nutrients-in-the-hilly-area-of-the-Loess-Plateau-China",{"abstract":1771,"title":1773,"references":1775,"doi":1777},{"EN":1772},"The irrational land use is one of the main reasons for the soil erosion and nutrienloss in the loess hilly area of China. In this project, 4 types of typical land use structure of sustain ment for about 15 years in the loess hill slope are selected to study the effect of land use structure on the distribution of soil nutrients. From hill bottom to hill top, the patterns of land use types are: grassland-slope farmland-forest, slope farmland-grassland-forest, terrace-grasslandforest and slope farmland-forest-grassland. By measuring the contents of the total N, total P, available N, available P and organic matter of soils, the results show that the land use structure types of slope farmland-grassland-forest and terrace-grassland-forest have a better capacity to maintain the soil nutrients.",{"EN":1774},"The effect of land use structure on the distribution of soil nutrients in the hilly area of the Loess Plateau, China",{"VOID":1776},"Fu Bojie, The spatial pattern analysis of agricultural landscape in the loess area,Acta Ecologica Sinica (in Chinese), 1995, 15 (2): 113.\nTang Keli, Chen Yongzong,The Regional Features and Control Measurements of Soil Erosion in the Loess Plateau (in Chinese), Beijing: China Science & Technology Press, 1991, 77.\nFu Bojie, Land Evaluation in the Loess Plateau of northern Shaanxi Province,Acta Conservationis Soli Et Aquae Sinica (in Chinese), 1991, 5(1): 1.\nLi Yong, Yang Juncheng, Zhu Yongyiet al., Using137Cs and210Pb to assess the sediment sources in a dam reservoir catchment on the Loess Plateau, China,China Nuclear Science and Technology Report, Beijing: Atomic Energy Press, 1997, 1–15.",{"VOID":1778},"10.1007\u002FBF02909714","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF02909714",[1781,1796,1809,1822],{"id":1782,"sortIndex":32,"researcher":28,"roles":1783,"affiliations":1784,"properties":1793,"displayName":1795,"givenName":28,"familyName":28},"1bc61f19-377d-44f9-8851-8f2631af3699",[954],[1785],{"id":1786,"sortIndex":32,"affiliation":1787,"properties":28},"177ad9e8-8724-4b35-97ed-b36fcb48c33f",{"id":1786,"createTime":28,"updateTime":28,"relativeEntities":1788,"slug":28,"properties":1789,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1792,"statistic":28},[],{"title":1790},{"VI":1791},"Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China",[],{"title":1794},{"VI":1795},"Bojie 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studies on model systems XAuPH3 (X=H, F, Cl, Br, I, CN, CH3) have been carried out by using ab intio HF and DFT B3LYP methods at pseudopotential and double-zeta LANL2DZ level. The results are compared with those of MP2. The properties of the models, i.e. the atomic net charge populations, the frontier molecular orbitals and nonlinear optical (NLO) properties have been investigated under an applied electric field on the basis of optimized structures. The computational results show that for these models characterized as electron acceptor-metal-electron donor (A-M-D) system, the NLO properties are due to intramolecular charge-transfer interaction between the acceptor and the donor. The more charges transfer gives, the better NLO properties. In the selected model systems, IAuPH3 has the biggest βvec and γ of 1184.1942 a.u. and 17341.9214 a.u., whereas IC6H4PH3\n                +, a typical A-π-D organic conjugated system, has βvec and γ of 710.7697 and 11664.1405 a.u. respectively. In comparison, IAuPH3 has significant NLO properties.",{"EN":1867},"Electronic structures and nonlinear optical properties of XAuPH3",{"VOID":1869},"Oudar, J. L., Chemla, D. S., Hyperpolarizbilities of the nitroanilines and their relations to the excited state dipole moment, J. Chem. Phys., 1977, 66(5): 2664.\nZyss, J., Molecular engineering implications of rotational invariance in quadratic nonlinear optics: From dipolar to octupolar molecules and materials, J. Chem. Phys., 1993, 98(9): 6583.\nAlbert, I. D. L., Marks, T. J., Ratner, M. A., Large molecular hyperpolarizabilities quantitative analysis of aromaticity and auxiliary donor-acceptor effects, J. Am. Chem. Soc., 1997, 119, 6575.\nSu, Z. M., Feng, J. K., Ren, A. M. et al., Finite field, time-dependent and coupled perturbed hartree-Fock calculation of nonlinear optical properties of pyridine N-oxide and its NH2, NO2-substituted derivatives, Chemical Journal of Chinese Universities (in Chinese), 2000, 21(4), 590.\nSu, Z. M., Hu, L.H., Qiu, Y. Q. et al., Theoretical chemical study on NLO properties of polypyridinopyridine and its derivatives, Synthetic Metals, 2001, 119: 577.\nSu, Z. M., Wang, X. J., Huang, Z. H. et al., Nonlinear optical properties for pyridines and stilbazoles adducted by borane, Synthetic Metals, 2001, 119: 583.\nHu, L. H., Su, Z. M., Wang, X. J. et al., PM3\u002FFF studies on nonlinear optical properties of polyacene and its derivatives, Synthetic Metals, 2001, 119: 579.\nLiu, C. L., Su, Z. M., Feng, J. K. et al., Theoretical studies on the one- and two-photon absorption of symmetrical stilbene derivatives, J. Mol. Stru. (THEOCHEM), 2000, 531: 169.\nLin, B. B., Qiu, Y. Q., Su, Z. M. et al., Theoretical study on stabilization and nonlinear optical properties of configuration isomer of schiff Base of the condensation of salicylaldehyde with aniline, Chemical Journal of Chinese Universities (in Chinese), 2001, 22(9): 1551.\nKamada, K., Ueda, M., Nagao, H. et al., Molecular design for organic nonlinear optics: Polarizability and hyperpolarizabilities of furan homologues investigated by Ab initio molecular orbital method, J. Phys. Chem. A, 2000, 104: 4723.\nFeng, J. K., Fu, W., Cui, M. et al., Calculations on electronic structure and nonlinear second-order susceptibility of C60 pyrrolidine\u002F ferrcenc based donor-bridge-acceptor dyads, Acta Chimica Sinica (in Chinese), 2000, 58: 1112.\nKanis, D. R., Ratner, M. A., Marks, T. J., Calculation and electronic deseription of quadratic hyperpolarizabilities toward a molecular understanding of NLO responses in organotransition metal chromophores, J. Am. Chem. Soc., 1992, 114: 10338.\nMathisson, T. J. L., Langdon, A. G., Milestone, N. B. et al., Isonitrile gold (I) nitrates as precursors for iron oxide-supported gold catalysts for CO oxidetion, Chem. Commun., 1998,(3): 371.\nPyykkö, P., Li, J., Runeberg, N., Predicted ligand dependence of the Au(I)-Au(I) attraction in (XAuPH3)2, Chem. Phys. Lett., 1994, 218(1,2): 133.\nPyykkö, P., Strong closed-shell interactions in inorganic chemistry, Chem. Rev, 1997, 97: 597.\nSu, Z.M., Hu, L.H., Chu, B. et al., Quantum chemical studies of metal-metal interaction and properties of complex [Ti(CO)6(MPEt3)]− (M=Au, Ag, Cu), Chemical Journal of Chinese Universities (in Chinese), 2001, 22(8): 1359.\nSu, Z. M., Zhang, H. X., Che, C. M., An ab initio study on the conformation and gold(I)-gold(I) interaction of the isomeric H2C[P(Ph)2AuX]2 and HC[P(Ph2)AuX]3 (X=I, Cl), Chemical Journal of Chinese Universities (in Chinese), 1997, 18(7), 1171.\nSchwerdtfeger, P., Dolg, M., Scwarz, W. H. E. et al., Relativistic effects in gold chemistry, I. Diatomic gold compounds, J. Chem. Phys., 1989, 91: 1762.\nFu, W., Feng, J. K., Ren, A. M. et al., A ZINDO-SOS study on nonlinear second-order optical properties of unsymmetric bis-(phenylethynyl) benzene series derivatives, Acta Chimica Sinica (in Chinese), 1999, 57, 1075.\nJerphagnon, J., Invariants of the third-rank cartesian tenser: Optical nonlinear susceptibilies, Phys. Rev. B, 1970, 2: 1091.",{"VOID":1871},"10.1360\u002F03tb9028","https:\u002F\u002Fwww.scichina.com\u002Fky\u002F0302\u002Fky0140.stm",[1874,1889,1902,1915,1928,1941,1954],{"id":1875,"sortIndex":32,"researcher":28,"roles":1876,"affiliations":1877,"properties":1886,"displayName":1888,"givenName":28,"familyName":28},"918e67b4-6e96-4385-9c62-92a9f2a10645",[954],[1878],{"id":1879,"sortIndex":32,"affiliation":1880,"properties":28},"16668e48-a250-4e45-8b5c-eced5aae765c",{"id":1879,"createTime":28,"updateTime":28,"relativeEntities":1881,"slug":28,"properties":1882,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1885,"statistic":28},[],{"title":1883},{"VI":1884},"Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, China",[],{"title":1887},{"VI":1888},"Yongqing 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dynamics of the H + NH→-N + H2, reaction has been investigated by means of the 3-atom model quasiclassical trajectory approach. The LEPS potential energy surface is employed in the study, which is obtained from theab initio results and has an early saddle point in the minimum energy path. The results indicate that the reaction product H2, is mainly scattered backward, and the reaction is found to occur via a direct channel. The product H2, is in a cold excitation of rotational state, but has a hot vibrational excitation. Based on the potential surface and the trajectory analysis, the reaction mechanism has been explained successfully.",{"EN":1999},"Microdynamics study on reaction of atom H and radical NH (X3Σ)",{"VOID":2001},"Dove, J. E., Nip, S. W., A shock-tube study of ammonia pyrolysis,Con. J. Chem., 1979, 57: 689.\nDavidson, D. F., Kohee-Hoingaus, K., Chang, A. Y.et al., High temperature reaction rate coefficients derived from N-atom ARAS measurements and excimer photolysis of NO,Int. J. Chem. Kinet., 1990, 22: 843.\nXu, Z., Fang, D., Fu, X.et al., Ab initio studies on the dynamics properties of the reaction NH(x3Σ-) + H→N(4S) + H2,J. Phys. Chem., 1997, 101: 4432.\nJohnson, B. R., Winter, N. W., Classical trajectory study of the effect of vibrational energy on the reaction of molecular hydrogen with atomic oxygen,J. Chem. Phys., 1977, 66: 4116.\nZhu, Z., Yu, H.,Molecular Structure and Molecular Potential Energy Function (in Chinese), Beijing: Science Press, 1997, 112.\nFarantos, S. C., Murrell, J. N., Classical dynamics of the O + ClO→Cl + O2, and C1 + O3→ ClO + O2 reaction,Inter. J. Quan. Chem., 1978, 14: 659.\nTachikawa, H., A theoretical study of the vibrational-rotational-state selectivity in chemical reactions: proton-transfer reaction F− + HCl(X1Σ)→HF(v,j)+ Cl−,J. Phys. Chem., 1995, 99: 255.",{"VOID":2003},"10.1007\u002FBF02886017","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF02886017",[2006,2021,2034],{"id":2007,"sortIndex":32,"researcher":28,"roles":2008,"affiliations":2009,"properties":2018,"displayName":2020,"givenName":28,"familyName":28},"d106469c-f285-4cb3-ae45-a051874fb675",[954],[2010],{"id":2011,"sortIndex":32,"affiliation":2012,"properties":28},"35fde916-f3b3-4425-add3-492e4ba13292",{"id":2011,"createTime":28,"updateTime":28,"relativeEntities":2013,"slug":28,"properties":2014,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2017,"statistic":28},[],{"title":2015},{"VI":2016},"State Key Laboratory of Moleclar Reaction Dynamics, Institute of Chemistry, Chinese Academy of Sciences, Beijing, China",[],{"title":2019},{"VI":2020},"Lijin Xu",{"id":2022,"sortIndex":40,"researcher":28,"roles":2023,"affiliations":2024,"properties":2031,"displayName":2033,"givenName":28,"familyName":28},"27625a4d-a883-4ca4-a443-2ffd15331c17",[954],[2025],{"id":2011,"sortIndex":32,"affiliation":2026,"properties":28},{"id":2011,"createTime":28,"updateTime":28,"relativeEntities":2027,"slug":28,"properties":2028,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2030,"statistic":28},[],{"title":2029},{"VI":2016},[],{"title":2032},{"VI":2033},"Jimin Yan",{"id":2035,"sortIndex":123,"researcher":28,"roles":2036,"affiliations":2037,"properties":2044,"displayName":2046,"givenName":28,"familyName":28},"17394cbc-f62d-41ca-8855-50d1108b44ab",[954],[2038],{"id":2011,"sortIndex":32,"affiliation":2039,"properties":28},{"id":2011,"createTime":28,"updateTime":28,"relativeEntities":2040,"slug":28,"properties":2041,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2043,"statistic":28},[],{"title":2042},{"VI":2016},[],{"title":2045},{"VI":2046},"Fan’ao Kong",{"url":2004,"publisher":2048,"properties":2061},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":2049,"slug":872,"properties":2050,"entityType":25,"verifyStatus":878,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"subjectFields":2053,"manageAffiliations":2054,"indexDatabases":2055,"url":28,"thumbnailPath":28,"statistic":2056,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":2051,"title":2052},{"VOID":875},{"EN":877},[],[],[],{"impactFactor":32,"impactFactorByYear":2057,"i10Index":884,"i10IndexLast5Year":32,"totalPublication":885,"totalPublicationByYear":2058,"totalCitation":902,"totalCitationByYear":2059,"totalCitationPerPublication":703,"totalCitationPerPublicationByYear":2060,"hindexLast5Year":206,"hindex":206},{"2012":117,"2013":117,"2014":319,"2015":461,"2016":117},{"1997":887,"1998":888,"1999":889,"2000":890,"2001":859,"2002":615,"2003":891,"2004":892,"2005":893,"2006":894,"2007":895,"2008":616,"2009":896,"2010":897,"2011":898,"2012":899,"2013":900,"2014":901},{"1997":429,"1998":904,"1999":701,"2000":905,"2001":906,"2002":907,"2003":908,"2004":909,"2005":910,"2006":911,"2007":912,"2008":913,"2009":914,"2010":915,"2011":916,"2012":917,"2013":918,"2014":919},{"1997":225,"1998":921,"1999":922,"2000":923,"2001":464,"2002":924,"2003":123,"2004":925,"2005":926,"2006":703,"2007":927,"2008":228,"2009":193,"2010":928,"2011":929,"2012":441,"2013":930,"2014":925},{"pages":2062,"volume":2064},{"VOID":2063},"1000-1003",{"VOID":1853},"1999-06-01",[]]