[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_c62121bd-26aa-4304-aaf8-7bb07f8c0e0d":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:c62121bd-26aa-4304-aaf8-7bb07f8c0e0d,\"}":25},{"code":4,"data":5,"meta":18},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":20,"manageAffiliations":21,"indexDatabases":22,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},"c62121bd-26aa-4304-aaf8-7bb07f8c0e0d","2026-04-17T06:47:31.378+00:00","2026-07-14T11:12:30.371+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",{"issn":12,"title":14},{"VOID":13},"31263607",{"VOID":15},"Tạp chí Khoa học và Công nghệ nhiệt đới","PUBLISHER","PENDING",null,0,[],[],[],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd","JOURNAL",{"meta":26,"data":28},{"total":27},"29",[29,175,293,386,528,644,797,856,1060,1229],{"id":30,"createTime":31,"updateTime":31,"relativeEntities":32,"slug":33,"properties":34,"entityType":43,"verifyStatus":44,"verifyTime":45,"verifyNote":46,"languages":47,"translateLanguages":18,"viewCount":19,"primaryUrl":49,"fullTextUrl":50,"authors":51,"publicationType":123,"publisherRelationship":124,"citationCount":18,"citationInfo":18,"publishDate":138,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":140,"openAccess":18,"references":141,"isForceReanalyzing":174},"74d1f8b1-aa85-41fa-ad67-cf0856209c02","2026-07-14T11:12:30.368+00:00",[],"S%E1%BB%AC-D%E1%BB%A4NG-HI%E1%BB%86N-T%C6%AF%E1%BB%A2NG-C%E1%BB%98NG-H%C6%AF%E1%BB%9ENG-PLASMON-B%E1%BB%80-M%E1%BA%B6T-C%E1%BB%A6A-DUNG-D%E1%BB%8ACH-NANO-V%C3%80NG-%C4%90%E1%BB%82-X%C3%81C-%C4%90%E1%BB%8ANH-AMIKACIN-TRONG-M%E1%BA%AAU-D%C6%AF%E1%BB%A2C-PH%E1%BA%A8M-B%E1%BA%B0NG-PH%C6%AF%C6%A0NG-PH%C3%81P-QUANG-H%E1%BB%8CC",{"abstract":35,"title":37,"keywords":39,"doi":41},{"VI":36},"USING SURFACE PLASMON RESONANCE (SPR) OF NANO GOLD SOLUTION FOR DETERMINATION OF AMIKACIN IN PHARMACEUTICAL SAMPLES BY SPECTROPHOTOMETRIC METHOD&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; A simple and highly sensitive spectrophotometric method for detecting amikacin was developed based on the change in surface plasmon resonance (SPR) properties of gold nanoparticles (AuNPs). The change in the AuNPs solution colour from red to blue in the presence of trace amounts of amikacin makes the method visible to the naked eye. Furthermore, with the addition of amikacin, in the UV-Vis spectrum appears another absorption band at 650 nm, and the AuNPs solution also gave a linear increase of optical absorption ratio A650\u002FA520 with a logarithm of amikacin concentration in the range of 3 × 10-7 - 3.5 × 10-6 M. Under the optimum conditions, including 2.5 × 10-4 M gold nanoparticles solution, pH = 6 and 2 mM NaCl with an incubation time of 4 minutes, the proposed method achieved the low limit of detection (LOD) of 7.2 × 10-8 M, the limit of quantitation (LOQ) of 2.4 × 10-7 M, high precision (RSD &lt; 5%). Therefore, the developed method can be applied to determine amikacin in pharmaceutical samples and in plasma and urine samples.",{"VI":38},"SỬ DỤNG HIỆN TƯỢNG CỘNG HƯỞNG PLASMON BỀ MẶT CỦA DUNG DỊCH NANO VÀNG ĐỂ XÁC ĐỊNH AMIKACIN TRONG MẪU DƯỢC PHẨM BẰNG PHƯƠNG PHÁP QUANG HỌC",{"VI":40},"Amikacin,UV-Vis,Au nanoparticles,hạt nano vàng",{"VOID":42},"10.58334\u002Fvrtc.jtst.n26.15","PUBLICATION","VERIFIED","2026-07-14T11:12:30.367+00:00","Auto Verify",[48],"VI","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F359","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F359\u002F279",[52,67,81,95,109],{"id":53,"sortIndex":19,"researcher":18,"roles":54,"affiliations":55,"properties":64},"68692bef-970c-46d5-a8a1-d9b291363718",[],[56],{"id":57,"sortIndex":19,"affiliation":58,"properties":18},"2c0df3f7-35c4-447d-9839-38a4498403b1",{"id":57,"createTime":18,"updateTime":18,"relativeEntities":59,"slug":18,"properties":60,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":63,"statistic":18},[],{"title":61},{"VI":62},"Khoa Hoá học, Trường Đại học Khoa học Tự nhiên, Đại học Quốc gia Hà Nội",[],{"title":65},{"VI":66},"Tô Thị Phương",{"id":68,"sortIndex":69,"researcher":18,"roles":70,"affiliations":71,"properties":78},"ad274692-ac75-4134-bd1f-d1c9077f040d",1,[],[72],{"id":57,"sortIndex":19,"affiliation":73,"properties":18},{"id":57,"createTime":18,"updateTime":18,"relativeEntities":74,"slug":18,"properties":75,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":77,"statistic":18},[],{"title":76},{"VI":62},[],{"title":79},{"VI":80},"Trần Ngọc Bích",{"id":82,"sortIndex":83,"researcher":18,"roles":84,"affiliations":85,"properties":92},"fec8b75b-3cb3-43d2-a8ad-e1d21ac1f4b9",2,[],[86],{"id":57,"sortIndex":19,"affiliation":87,"properties":18},{"id":57,"createTime":18,"updateTime":18,"relativeEntities":88,"slug":18,"properties":89,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":91,"statistic":18},[],{"title":90},{"VI":62},[],{"title":93},{"VI":94},"Nguyễn Quang Khánh",{"id":96,"sortIndex":97,"researcher":18,"roles":98,"affiliations":99,"properties":106},"004fb00f-97b2-4743-a925-894a55d75cd6",3,[],[100],{"id":57,"sortIndex":19,"affiliation":101,"properties":18},{"id":57,"createTime":18,"updateTime":18,"relativeEntities":102,"slug":18,"properties":103,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":105,"statistic":18},[],{"title":104},{"VI":62},[],{"title":107},{"VI":108},"Bùi Xuân Thành",{"id":110,"sortIndex":111,"researcher":18,"roles":112,"affiliations":113,"properties":120},"06e77520-506e-4457-9e87-7bdc44d9a01f",4,[],[114],{"id":57,"sortIndex":19,"affiliation":115,"properties":18},{"id":57,"createTime":18,"updateTime":18,"relativeEntities":116,"slug":18,"properties":117,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":119,"statistic":18},[],{"title":118},{"VI":62},[],{"title":121},{"VI":122},"Phạm Thị Ngọc Mai","ARTICLE",{"url":18,"publisher":125,"properties":133},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":126,"slug":10,"properties":127,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":130,"manageAffiliations":131,"indexDatabases":132,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":128,"title":129},{"VOID":13},{"VOID":15},[],[],[],{"issue":134,"pages":136},{"VOID":135},"26",{"VOID":137},"148-157","2025-04-09",2025,[],[142,144,146,148,150,152,154,156,158,160,162,164,166,168,170,172],{"id":18,"text":143,"url":18,"identifiers":18},"Faten Farouk, Hassan M. E. Azzazy, Wilfried M. A. Niessen, Challenges in the determination of aminoglycoside antibiotics, a review, Analytica Chimica Acta, 2015, 890:21-43.",{"id":18,"text":145,"url":18,"identifiers":18},"Jin-Zhong Xu, Jun-Jie Zhu, Hui Wang, Hong-Yuan Chen, Nano-sized copper oxide modified carbon paste electrodes as an amperometric sensor for amikacin, Analytical Letters, 2003, 36:2723-2733.",{"id":18,"text":147,"url":18,"identifiers":18},"Shigeyuki Oguri, Yasuyoshi Miki, Determination of amikacin in human plasma by high-performance capillary electrophoresis with fluorescence detection, Journal of Chromatography B: Biomedical Sciences and Applications, 1996, 686(2):205-210.",{"id":18,"text":149,"url":18,"identifiers":18},"Gordana Brajanoski, Jos Hoogmartens, Karel Allegaert, Erwin Adams, Determination of amikacin in cerebrospinal fluid by high-performance liquid chromatography with pulsed electrochemical detection, Journal of Chromatography B, 2008, 867:149-152.",{"id":18,"text":151,"url":18,"identifiers":18},"Deguang Li, Shun He, Yufang Deng, Guanglong Ding, Hanwen Ni, Yongsong Cao, Development and validation of an HPLC method for determination of amikacin in water samples by solid phase extraction and pre-column derivatization, Bulletin of Environmental Contamination and Toxicology, 2014, 93:47-52.",{"id":18,"text":153,"url":18,"identifiers":18},"John Turkevich, Peter Cooper Stevenson, James Hillier, A study of the nucleation and growth processes in the synthesis of colloidal gold, Discussions of the Faraday Society, 1951, 11:55-75.",{"id":18,"text":155,"url":18,"identifiers":18},"Jiaqi Dong, Paul L. Carpinone, Georgios Pyrgiotakis, Philip Demokritou, Brij M. Moudgil, Synthesis of precision gold nanoparticles using Turkevich method, Kona Powder and Particle Journal, 2020, 37:224-232.",{"id":18,"text":157,"url":18,"identifiers":18},"Nguyen Thu Ha, Nguyen Quang Khanh, Pham Thi Ngoc Mai, Synthesis of nano gold particles towards application as sensor for acetamiprid determination, Tạp chí phân tích Hóa, Lý và Sinh học, 2019, 24:163-167.",{"id":18,"text":159,"url":18,"identifiers":18},"Emameian A., Ahangari A., Salouti M., Amirmozafari N., Enhanced effect of Amikacin in conjugation with gold nanoparticles as a carrier to kill Pseudomonas aeruginosa, Nanochemistry Research, 2020, 5(2):179-184.",{"id":18,"text":161,"url":18,"identifiers":18},"Tianyu Zheng, Yuen Yee Li Sip, Michael B.Leong, Qun Huo, Linear self-assembly formation between gold nanoparticles and aminoglycoside antibiotics, Colloids and Surfaces B: Biointerfaces, 2018, 164:185-191.",{"id":18,"text":163,"url":18,"identifiers":18},"Kim T., Lee K., Gong M., Joo S. W., Control of gold nanoparticle aggregates by manipulation of interparticle interaction, Langmuir, 2005, 21:9524-9528.",{"id":18,"text":165,"url":18,"identifiers":18},"Mohamed Abdel-Tawab Korany, Rim Said Haggag, Marwa Adel Ragab, Osama Ahmed Elmallah, Liquid chromatographic determination of amikacin sulphate after pre-column derivatization, Journal of Chromatographic Science, 2014, 52(8):837-847.",{"id":18,"text":167,"url":18,"identifiers":18},"Neha Sharma, Sathish Panneer Selvam, Kyusik Yun, Electrochemical detection of amikacin sulphate using reduced graphene oxide and silver nanoparticles nanocomposite, Applied Surface Science, 2020, 512:145742.",{"id":18,"text":169,"url":18,"identifiers":18},"Chang-Zhu Yu, You-Zhao He, Guo-Ni Fu, Hai-Yang Xie, Wu-Er Gan, Determination of kanamycin A, amikacin and tobramycin residues in milk by capillary zone electrophoresis with post-column derivatization and laser-induced fluorescence detection, Journal of Chromatography B, 2009, 877(3):333-338.",{"id":18,"text":171,"url":18,"identifiers":18},"J. M. Ramos Fernández, J. M. Bosque-Sendra, A. M. García-Campaña, F. Alés Barrero, Chemiluminescence determination of amikacin based on the inhibition of the luminol reaction catalyzed by copper, Journal of Pharmaceutical and Biomedical Analysis, 2005, 36(5):969-974.",{"id":18,"text":173,"url":18,"identifiers":18},"Javad Hassanzadeh, Babak Rezaei Moghadam, AliSobhani-Nasab, Farhad Ahmadi, Mehdi Rahimi-Nasrabadi, Specific fluorometric assay for direct determination of amikacin by molecularly imprinting polymer on high fluorescent g-C3N4 quantum dots, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2019, 214:451-458.",false,{"id":176,"createTime":177,"updateTime":177,"relativeEntities":178,"slug":179,"properties":180,"entityType":43,"verifyStatus":44,"verifyTime":189,"verifyNote":46,"languages":190,"translateLanguages":18,"viewCount":19,"primaryUrl":191,"fullTextUrl":192,"authors":193,"publicationType":123,"publisherRelationship":250,"citationCount":18,"citationInfo":18,"publishDate":264,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":265,"openAccess":18,"references":266,"isForceReanalyzing":174},"df8df172-e28d-40af-bc6c-27f1c859e0ca","2026-07-14T11:12:25.172+00:00",[],"%E1%BB%A8NG-D%E1%BB%A4NG-GIS-V%C3%80-T%C6%AF-LI%E1%BB%86U-VI%E1%BB%84N-TH%C3%81M-%C4%90%C3%81NH-GI%C3%81-BI%E1%BA%BEN-%C4%90%E1%BB%98NG-L%E1%BB%9AP-PH%E1%BB%A6-R%E1%BB%AANG-T%E1%BA%A0I-V%C3%99NG-%C4%90%E1%BB%86M-V%C6%AF%E1%BB%9CN-QU%E1%BB%90C-GIA-C%C3%81T-TI%C3%8AN-THU%E1%BB%98C-%C4%90%E1%BB%8AA-PH%E1%BA%ACN-HUY%E1%BB%86N-T%C3%82N-PH%C3%9A-T%E1%BB%88NH-%C4%90%E1%BB%92NG-NAI",{"abstract":181,"title":183,"keywords":185,"doi":187},{"VI":182},"APPLICATION OF GIS AND REMOTE SENSING DATA FOR ASSESSMENT OF FOREST COVER CHANGE IN THE BUFFER ZONE OF CAT TIEN NATIONAL PARK IN TAN PHU DISTRICT, DONG NAI PROVINCEThe Cat Tien National Park in the South of Vietnam represents a protected ecological area, it is located in tropical rainforest zone. For assessment of forest cover change in three buffer zones of Cat Tien National Park, namely Nam Cat Tien, Nui Tuong and Phu An at Tan Phu district, satellite images (Landsat 5 TM and Landsat 8 OLI) take in 1990, 2000, 2010 and 2020 were used. Land use\u002Fland cover were classified by 5 categories using maximum likelihood classifier (MLC) method, result of constructing a key for image classification showed that images without reference data for classification have over 83.50% of map accuracies. After classification, differentiation of forest land use\u002Flandcover was analysied in each year. Deforestation and agricultural area reduction took place in 1990 - 2020 period. Besides, study has quantified changes in forest cover during periods: 1990 - 2000, 2000 - 2010 and 2010 - 2020. As a result, findings show that the extents of forest cover have decreased from 5522.22 ha to 2620.98 ha during the period of 1990 - 2020. Maps of forest status as well as changes in forests can be used for forest resource management activities under the Cat Tien National Park management.",{"VI":184},"ỨNG DỤNG GIS VÀ TƯ LIỆU VIỄN THÁM ĐÁNH GIÁ BIẾN ĐỘNG LỚP PHỦ RỪNG TẠI VÙNG ĐỆM VƯỜN QUỐC GIA CÁT TIÊN THUỘC ĐỊA PHẬN HUYỆN TÂN PHÚ, TỈNH ĐỒNG NAI",{"VI":186},"Buffer zone,changes,forest cover,GIS,remote sensing,Cat Tien National Park",{"VOID":188},"10.58334\u002Fvrtc.jtst.n31.03","2026-07-14T11:12:25.171+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F124","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F124\u002F64",[194,209,222,235],{"id":195,"sortIndex":19,"researcher":18,"roles":196,"affiliations":197,"properties":206},"c6572daf-13b3-4e0c-81f4-2d21c9ed0a9b",[],[198],{"id":199,"sortIndex":19,"affiliation":200,"properties":18},"09f265e9-d620-4bd2-a998-0f5b1932234e",{"id":199,"createTime":18,"updateTime":18,"relativeEntities":201,"slug":18,"properties":202,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":205,"statistic":18},[],{"title":203},{"VI":204},"Chi nhánh Phía Nam, Trung tâm Nhiệt đới Việt - Nga",[],{"title":207},{"VI":208},"Nguyễn Trung Đức",{"id":210,"sortIndex":69,"researcher":18,"roles":211,"affiliations":212,"properties":219},"88db8683-8715-4a73-a73b-35b69da1f755",[],[213],{"id":199,"sortIndex":19,"affiliation":214,"properties":18},{"id":199,"createTime":18,"updateTime":18,"relativeEntities":215,"slug":18,"properties":216,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":218,"statistic":18},[],{"title":217},{"VI":204},[],{"title":220},{"VI":221},"Nguyễn Thị Vân",{"id":223,"sortIndex":83,"researcher":18,"roles":224,"affiliations":225,"properties":232},"8b463c49-1d9d-406d-84fb-d64562c8b43a",[],[226],{"id":199,"sortIndex":19,"affiliation":227,"properties":18},{"id":199,"createTime":18,"updateTime":18,"relativeEntities":228,"slug":18,"properties":229,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":231,"statistic":18},[],{"title":230},{"VI":204},[],{"title":233},{"VI":234},"Trương Thị Ngân",{"id":236,"sortIndex":97,"researcher":18,"roles":237,"affiliations":238,"properties":247},"dd278cf6-51e2-4d25-9a05-1d323e1fddee",[],[239],{"id":240,"sortIndex":19,"affiliation":241,"properties":18},"b41d0572-9f89-490e-825b-b4243116b8ef",{"id":240,"createTime":18,"updateTime":18,"relativeEntities":242,"slug":18,"properties":243,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":246,"statistic":18},[],{"title":244},{"VI":245},"Hạt Kiểm lâm Vườn Quốc gia Cát Tiên",[],{"title":248},{"VI":249},"Đinh Tiến Hậu",{"url":18,"publisher":251,"properties":259},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":252,"slug":10,"properties":253,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":256,"manageAffiliations":257,"indexDatabases":258,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":254,"title":255},{"VOID":13},{"VOID":15},[],[],[],{"issue":260,"pages":262},{"VOID":261},"31",{"VOID":263},"27-38","2025-04-07",[],[267,269,271,273,275,277,279,281,283,285,287,289,291],{"id":18,"text":268,"url":18,"identifiers":18},"Nguyễn Hải Hòa, Nguyễn Văn Quốc, Sử dụng ảnh viễn thám Landsat và GIS xây dựng bản đồ biến động diện tích rừng tại vùng đệm Vườn Quốc Gia Xuân Sơn, Tạp chí Khoa học và Công nghệ Lâm nghiệp, 2017, 3:46-56.",{"id":18,"text":270,"url":18,"identifiers":18},"Trần Thị Thơm, Phạm Thanh Quế, Sử dụng tư liệu viễn thám và GIS thành lập bản đồ lớp phủ rừng tỷ lệ 1\u002F10.000, Tạp chí Khoa học và Công nghệ Lâm nghiệp, 2014, 4:161-168",{"id":18,"text":272,"url":18,"identifiers":18},"Hansen M. C., et al., A method for integrating MODIS and Landsat data for systematic monitoring of forest cover and change in Congo Basin, Remote Sesing of Environment, 2008, 112(5):2495-2513.",{"id":18,"text":274,"url":18,"identifiers":18},"Rawat J. S. and Manish K., Monitoring land use\u002Fcover change using remote sensing techniques: A case study of Hawalbagh block, district Almora, Uttarakhand, India, The Egyptian Journal of Remote Sensing and Space Science, 2015, 18(1):77-84.",{"id":18,"text":276,"url":18,"identifiers":18},"Đoàn Duy Hiếu, Nguyễn Thám, Đánh giá biến động diện tích rừng huyện Ia Pa, tỉnh Gia Lai trên tư liệu viễn thám đa thời gian và GIS, Tạp chí Khoa học và Giáo dục Đại học Sư Phạm Huế, 2(42):116-126.",{"id":18,"text":278,"url":18,"identifiers":18},"Kovyazin B. V. and Dang Thi Lan Anh, Mornitoring of forest lands of Kim Hy Reserve in VietNam with using gis technologies, Astrakhan Bullentin of Ecological Education, 2019, 3:95-102",{"id":18,"text":280,"url":18,"identifiers":18},"Đinh Thanh Sang, Đánh giá tiềm năng bảo tồn đa dạng sinh học: Trường hợp nghiên cứu ở vùng đệm Vườn Quốc gia Cát Tiên, Tạp chí Khoa học và Công nghệ Lâm nghiệp, 2020 2:78-84",{"id":18,"text":282,"url":18,"identifiers":18},"Vũ Đức Cường, Phát triển du lịch cộng đồng ở khu vực Vườn Quốc gia Cát Tiên, tỉnh Đồng Nai, Đại học Khoa học xã hội và nhân văn, Hà Nội, 2015, tr.36-47.",{"id":18,"text":284,"url":18,"identifiers":18},"Gyanesh Chander, et al., Summary of current radiometric calibration coefficients for landsat MSS, TM, ETM+ and EO-1 ALI sensors, Remote Sensing of Environment, 2009 113(5):893-903.",{"id":18,"text":286,"url":18,"identifiers":18},"Vũ Thị Thìn, Phạm Văn Duẩn, Nguyễn Văn Thị, Nguyễn Việt Hưng, Ngyễn Hữu Văn, Nghiên cứu xây dựng quy trình xử lý ảnh vệ tinh landsat 8 trong arcgis, Tạp chí Khoa học và Công nghệ Lâm nghiệp, 2015,1:73-83.",{"id":18,"text":288,"url":18,"identifiers":18},"Haque M. I. and Basak R., Land cover change detection using gis and remote sensing techniques: a spatio temporal study on Tanguar Haor, Sunamganj, Bangladesh, The Egyptian Jounal of Remote Sensing and Space Sciences, 2017, 20:251-263.",{"id":18,"text":290,"url":18,"identifiers":18},"Congalton, et al., Assessing the accuracy of remotely sensed data: principles and practices, 2nd ed.; Taylor and Francis Group, LLC: UK, 2009.",{"id":18,"text":292,"url":18,"identifiers":18},"Phạm Quang Vinh, Vũ Thị Kim Dung, Ứng dụng công nghệ viễn thám và GIS đánh giá biến động tài nguyên rừng ở tỉnh Điện Biên, Tạp chí khoa học và công nghệ Việt Nam, 2016, 58(3):38-43",{"id":294,"createTime":295,"updateTime":295,"relativeEntities":296,"slug":297,"properties":298,"entityType":43,"verifyStatus":44,"verifyTime":307,"verifyNote":46,"languages":308,"translateLanguages":18,"viewCount":19,"primaryUrl":309,"fullTextUrl":310,"authors":311,"publicationType":123,"publisherRelationship":353,"citationCount":18,"citationInfo":18,"publishDate":367,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":368,"openAccess":18,"references":369,"isForceReanalyzing":174},"018528cf-6f3b-4d0f-9add-cc6743d56ae7","2026-07-14T11:12:25.161+00:00",[],"%C4%90%C3%81NH-GI%C3%81-KH%E1%BA%A2-N%C4%82NG-PH%C3%82N-T%C3%8DCH-DIOXIN-TRONG-N%E1%BB%80N-M%E1%BA%AAU-N%C6%AF%E1%BB%9AC-B%E1%BA%B0NG-H%E1%BB%86-TH%E1%BB%90NG-THI%E1%BA%BET-B%E1%BB%8A-S%E1%BA%AEC-K%C3%9D-PH%E1%BB%94-BA-T%E1%BB%A8-C%E1%BB%B0C-GC-MS-MS",{"abstract":299,"title":301,"keywords":303,"doi":305},{"VI":300},"Khả năng phân tích mẫu của thiết bị GC-MS\u002FMS hoàn toàn đáp ứng những yêu cầu của một phương pháp phân tích dựa trên những tiêu chí của phương pháp US EPA 1613B, bao gồm hệ số biến thiên RSD thấp (&lt;15%), hệ số tương quan R2&gt;0.9995 và hiệu suất thu hồi của các chất chuẩn đánh dấu 13C của 17 đồng loại đều nằm trong khoảng cho phép của phương pháp (20~180%) [4].\r\n- Kết quả phân tích đối chứng thu cho thấy sự tương đồng về khả năng phân tích giữa thiết bị GC-MS\u002FMS và thiết bị phân giải cao DFS khi phân tích mẫu nước có nồng độ cao, với độ lệch chuẩn của hầu hết các đồng loại đều nhỏ hơn 20%, cho thấy tiềm năng phân tích dioxoin\u002Ffuran trong mẫu nước của thiết bị GC-MS\u002FMS là rất tốt, tính chọn lọc cao. Tuy nhiên, thiết bị DFS có khả năng phân tích tốt và chính xác những mẫu nước có nồng độ dioxin\u002Ffuran từ thấp tới rất thấp.\r\n- Có thể sử dụng thiết bị GC-MS\u002FMS để phân tích những mẫu nước có nồng độ dioxin\u002Ffuran từ trung bình tới cao. Đối với mẫu nước có nồng độ dioxin\u002Ffuran thấp, thiết bị có thể sử dụng nhằm khẳng định dấu vết sự có mặt của PCDD\u002FF trong mẫu phân tích.",{"VI":302},"ĐÁNH GIÁ KHẢ NĂNG PHÂN TÍCH DIOXIN TRONG NỀN MẪU NƯỚC BẰNG HỆ THỐNG THIẾT BỊ SẮC KÝ PHỔ BA TỨ CỰC GC-MS\u002FMS",{"VI":304},"phân tích dioxin,mẫu nước,thiết bị sắc ký phổ ba tứ cực GC-MS\u002FMS,phân tích mẫu nước",{"VOID":306},"10.58334\u002Fvrtc.jtst.n32.11","2026-07-14T11:12:25.160+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F147","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F147\u002F85",[312,327,340],{"id":313,"sortIndex":19,"researcher":18,"roles":314,"affiliations":315,"properties":324},"dc1af99e-5bd5-428a-9cff-68adcfda162b",[],[316],{"id":317,"sortIndex":19,"affiliation":318,"properties":18},"72fd196a-eeef-488b-a59c-3282ba3c26a7",{"id":317,"createTime":18,"updateTime":18,"relativeEntities":319,"slug":18,"properties":320,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":323,"statistic":18},[],{"title":321},{"VI":322},"Phân viện Hóa - Môi trường, Trung tâm Nhiệt đới Việt - Nga",[],{"title":325},{"VI":326},"Vũ Trung Hiếu",{"id":328,"sortIndex":69,"researcher":18,"roles":329,"affiliations":330,"properties":337},"c11aba49-ebcf-4051-ae6a-73b10509e7ef",[],[331],{"id":317,"sortIndex":19,"affiliation":332,"properties":18},{"id":317,"createTime":18,"updateTime":18,"relativeEntities":333,"slug":18,"properties":334,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":336,"statistic":18},[],{"title":335},{"VI":322},[],{"title":338},{"VI":339},"Nguyễn Thanh Tuấn",{"id":341,"sortIndex":83,"researcher":18,"roles":342,"affiliations":343,"properties":350},"8ca226d6-0b5e-42b6-9a18-c640ac73aa54",[],[344],{"id":317,"sortIndex":19,"affiliation":345,"properties":18},{"id":317,"createTime":18,"updateTime":18,"relativeEntities":346,"slug":18,"properties":347,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":349,"statistic":18},[],{"title":348},{"VI":322},[],{"title":351},{"VI":352},"Nghiêm Xuân Trường",{"url":18,"publisher":354,"properties":362},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":355,"slug":10,"properties":356,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":359,"manageAffiliations":360,"indexDatabases":361,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":357,"title":358},{"VOID":13},{"VOID":15},[],[],[],{"issue":363,"pages":365},{"VOID":364},"32",{"VOID":366},"108-114","2025-05-04",[],[370,372,374,376,378,380,382,384],{"id":18,"text":371,"url":18,"identifiers":18},"United Nations Environment Programme 22 May 2001 Genève POPs, updated 2015 Feb. Stockholm Convention (SC) Persistent Organic Pollutants (POPs), 2015, http:\u002F\u002Fwww.pops.int.",{"id":18,"text":373,"url":18,"identifiers":18},"Thủ tướng Chính phủ Việt Nam, Quyết định số 1598\u002FQĐ-TTg về việc ban hành kế hoạch quốc gia thực hiện công ước stockholm về các chất ô nhiễm hữu cơ khó phân hủy đến năm 2025, tầm nhìn đến năm 2030, 2017.",{"id":18,"text":375,"url":18,"identifiers":18},"D. Zacs, V. Bartkevics, Polychlorinated dibenzo-p-dioxins, dibenzofurans and dioxin-like polychlorinated biphenyls in food and feed in Latvia in 2009-2011, Food Additives and Contam: Part B Surveillance, 2014, 7:186-201. DOI: 10.1080\u002F19393210.2013.875598",{"id":18,"text":377,"url":18,"identifiers":18},"US EPA, Method EPA 1613B, Tetra- through octa-chlorinated dioxin and furans by isotope dilution HRGC\u002FHRMS, Revision B, in: U.E.P.A. (EPA) (Ed.), EU, Washington, DC, 1994.",{"id":18,"text":379,"url":18,"identifiers":18},"Off. J. Eur. Union, Commision Regulation (EU) No 709\u002F2014 of 20 June 2014 amending Regulation (EC) No 152\u002F2009 as regards the determination of the levels of dioxins and polychlorinated biphenyls, 2014, 188:1-18.",{"id":18,"text":381,"url":18,"identifiers":18},"Off. J. Eur. Union, Commission Regulation (EU) No 589\u002F2014 of 2 June 2014 laying down methods of sampling and analysis for the control of levels of dioxins, dioxin-like PCBs and non-dioxin-like PCBs in certain foodstuffs and repealing Regulation (EU) No 252\u002F2012, 2014, 164:18-40.",{"id":18,"text":383,"url":18,"identifiers":18},"Off. J. Eur. Union, Commission Regulation (EU) 2017\u002F644 of 5 April 2017 laying down methods of sampling and analysis for the control of levels of dioxins, dioxin-like PCBs and non-dioxin-like PCBs in certain foodstuffs and repealing Regulation (EU) No 589\u002F2014, 2017, 92:9-34.",{"id":18,"text":385,"url":18,"identifiers":18},"N.T.Xuyên, Nghiên cứu xây dựng quy trình phân tích dioxin\u002Ffurans trong mẫu sữa bằng thiết bị sắc kí khí ghép nối khối phổ phân giải cao (HRGC-HRMS), Tạp chí phân tích Hóa, Lý, và Sinh học, 24(4B\u002F2019):16-21.",{"id":387,"createTime":388,"updateTime":388,"relativeEntities":389,"slug":390,"properties":391,"entityType":43,"verifyStatus":44,"verifyTime":400,"verifyNote":46,"languages":401,"translateLanguages":18,"viewCount":19,"primaryUrl":402,"fullTextUrl":403,"authors":404,"publicationType":123,"publisherRelationship":463,"citationCount":18,"citationInfo":18,"publishDate":477,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":478,"openAccess":18,"references":479,"isForceReanalyzing":174},"3ea36e5b-6d2f-4b72-90d9-41c18e98c52e","2026-07-02T03:25:27.843+00:00",[],"SUBSTRATE-ASSEMBLAGES-OF-MYXOMYCETES-MYXOGASTRIA-ON-THE-BARK-OF-LIVING-TREES-AND-AERIAL-LITTER-IN-VIETNAMESE-FORESTS",{"abstract":392,"title":394,"keywords":396,"doi":398},{"VI":393},"SUBSTRATE ASSEMBLAGES OF MYXOMYCETES (MYXOGASTRIA) ON THE BARK OF LIVING TREES AND AERIAL LITTER IN VIETNAMESE FORESTSMyxomycete (Myxogastria) are amoeboid protists, usually associated with soil or nearby substrates, as their trophic stages require moist conditions and sufficient number of microorganisms to feed on. However, they are able to inhabit places that have no direct connection with soil. In this paper myxomycete assemblages encountered on bark and aerial liter, a unique substrate of tropical forest, were studied. The material was collected in different years in various vegetation types of 3 national parks, Phia Oac-Phia Den, Bidoup-Nui Ba and Cat Tien, located in distant parts of Vietnam during the last 10 years. Taxonomic diversity was revealed via the experiment using moist chamber cultures. A total of 1009 cultures resulted in 747 records, assigned to 87 morphospecies from 5 orders, 9 families, and 23 genera. Seventy-three species were recorded on the bark of living plants and 45 were found on aerial litter, and the study for each substrate was completed for 74.5 and 72.7 per cent respectively. More than a half of the total number of species was presented by singletons and doubletons. The analysis of indicator species was performed, which confirmed the dominance of specialist species on bark (Cribraria confusa, C. minutissima, and Licea operculata) and aerial litter (Perichaena depressa, P. dictyonema, and P. pedata). Some species, such as Perichaena chrysosperma, demonstrated no specific substrate preference. A typical lignicolous species in temperate regions, Stemonitis fusca, appeared to be abundant on aerial litter, showing a change in substrate preferences, which is common for several myxomycete species in tropics. High-quality photographs, including those obtained with SEM, of 10 indicator morphospecies are provided.",{"VI":395},"SUBSTRATE ASSEMBLAGES OF MYXOMYCETES (MYXOGASTRIA) ON THE BARK OF LIVING TREES AND AERIAL LITTER IN VIETNAMESE FORESTS",{"VI":397},"Amoebozoa,Myxomycetes,tropics,biodiversity,corticulous species",{"VOID":399},"10.58334\u002Fvrtc.jtst.n24.04","2026-07-02T03:25:27.839+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F387","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F387\u002F305",[405,420,435,448],{"id":406,"sortIndex":19,"researcher":18,"roles":407,"affiliations":408,"properties":417},"9ee2dc94-7145-4c04-a772-5a31d18db8e6",[],[409],{"id":410,"sortIndex":19,"affiliation":411,"properties":18},"178869a5-fe4a-423b-819e-97da6dc1f3b1",{"id":410,"createTime":18,"updateTime":18,"relativeEntities":412,"slug":18,"properties":413,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":416,"statistic":18},[],{"title":414},{"VI":415},"Saint Petersburg State University",[],{"title":418},{"VI":419},"Fedorova N. A.",{"id":421,"sortIndex":69,"researcher":18,"roles":422,"affiliations":423,"properties":432},"9ca57e73-6012-46b0-8fb1-dbe21d41bff1",[],[424],{"id":425,"sortIndex":19,"affiliation":426,"properties":18},"f7e0f466-299b-480d-9d5e-35c278e259ec",{"id":425,"createTime":18,"updateTime":18,"relativeEntities":427,"slug":18,"properties":428,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":431,"statistic":18},[],{"title":429},{"VI":430},"Komarov Botanical Institute of the Russian Academy of Sciences",[],{"title":433},{"VI":434},"Novozhilov Yu. K.",{"id":436,"sortIndex":83,"researcher":18,"roles":437,"affiliations":438,"properties":445},"3324cd08-1a56-44b9-bc44-57319426517c",[],[439],{"id":425,"sortIndex":19,"affiliation":440,"properties":18},{"id":425,"createTime":18,"updateTime":18,"relativeEntities":441,"slug":18,"properties":442,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":444,"statistic":18},[],{"title":443},{"VI":430},[],{"title":446},{"VI":447},"Shchepin O. N. ",{"id":449,"sortIndex":97,"researcher":18,"roles":450,"affiliations":451,"properties":460},"d8aaff6c-165d-4d57-96b3-5accc75140a6",[],[452],{"id":453,"sortIndex":19,"affiliation":454,"properties":18},"00eb957f-6439-455e-bf3b-640b54b2d0e0",{"id":453,"createTime":18,"updateTime":18,"relativeEntities":455,"slug":18,"properties":456,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":459,"statistic":18},[],{"title":457},{"VI":458},"Joint Russian-Vietnamese Tropical Research and Technological Centre",[],{"title":461},{"VI":462},"Nguyen Dang Hoi",{"url":18,"publisher":464,"properties":472},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":465,"slug":10,"properties":466,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":469,"manageAffiliations":470,"indexDatabases":471,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":467,"title":468},{"VOID":13},{"VOID":15},[],[],[],{"issue":473,"pages":475},{"VOID":474},"24",{"VOID":476},"41-52","2025-03-26",[],[480,482,484,486,488,490,492,494,496,498,500,502,504,506,508,510,512,514,516,518,520,522,524,526],{"id":18,"text":481,"url":18,"identifiers":18},"Lado C., An on-line nomenclatural information system of Eumycetozoa, http:\u002F\u002Fwww.eumycetozoa.com (accessed last 01.07.2021), 200-2021.",{"id":18,"text":483,"url":18,"identifiers":18},"Fiore-Donno A. M., Clissmann F., Meyer M., Schnittler M., Cavalier-Smith T., Two-gene phylogeny of bright-spored Myxomycetes (slime moulds, superorder Lucisporidia), PloS ONE, 2013, e62586.",{"id":18,"text":485,"url":18,"identifiers":18},"Hillmann F., Forbes G., Novohradská S., Ferling I., Riege K., Groth M., Westermann M., Marz M., Spaller T., Winckler T., Schaap P., Glöckner G., Multiple roots of fruiting body formation in Amoebozoa, Genome Biology and Evolution, 2018, 10:591-606.",{"id":18,"text":487,"url":18,"identifiers":18},"Geisen S., Køller R., Hünninghaus M., Dumack K., Urich T., Bonkowski M., The soil food web revisited: diverse and widespread mycophagous soil protists, Soil Biology and Biochemistry, 2016, 94:10-18.",{"id":18,"text":489,"url":18,"identifiers":18},"Geisen S., Tveit A. T., Clark I. M., Richter A., Svenning M. M., Bonkowski M., Urich T., Metatranscriptomic census of active protists in soils, The ISME Journal, 2015, 9:2178-2190.",{"id":18,"text":491,"url":18,"identifiers":18},"Urich T., Lanzén A., Qi J., Huson D. H., Schleper C., Schruster S. C., Simultaneous assessment of soil microbial community structure and function through analysis of the meta-transcriptome, PLoS ONE, 2008, e2527.",{"id":18,"text":493,"url":18,"identifiers":18},"Novozhilov Y. K., Rollins A., Schnittler M., Ecology and distribution of Myxomycetes, Myxomycetes: biology, systematics, biogeography and ecology, Academic Press, London, 2017b2, pp. 53-297.",{"id":18,"text":495,"url":18,"identifiers":18},"Schnittler M., Foliicolous liverworts as a microhabitat for Neotropical Myxomycetes, Nova Hedwigia, 2001, 72:259-270.",{"id":18,"text":497,"url":18,"identifiers":18},"Stephenson S. L., Schnittler M., Lado C., Ecological characterization of a tropical myxomycete assemblage-Maquipucuna Cloud Forest Reserve, Ecuador, Mycologia, 2004, 96:488-497.",{"id":18,"text":499,"url":18,"identifiers":18},"Novozhilov Y. K., Shchepin O. N., Schnittler M., Dagamac N. H. A., Alexandrova, Popov E. S., Kuznetsov A.N., Myxomycetes associated with mountain tropical forests of Bidoup Nui Ba and Chu Yang Sin national parks (Dalat Plateau, southern Vietnam), Nova Hedwigia, 2020, 110:185-224.",{"id":18,"text":501,"url":18,"identifiers":18},"Schnittler M., Stephenson S. L., Inflorescences of Neotropical herbs as a newly discovered microhabitat for myxomycetes, Mycologia, 2002, 94:6-20.",{"id":18,"text":503,"url":18,"identifiers":18},"Stephenson S. L., Marbaniang T. M., Gupta P., Rojas C., Assemblages of corticolous myxomycetes associated with species of Pinus (Pinaceae) in four different regions of the world, Nova Hedwigia, 2020, 111:199-217.",{"id":18,"text":505,"url":18,"identifiers":18},"Black D. R., Stephenson S. L., Pearce C., Myxomycetes associated with the aerial litter microhabitat in tropical forests of Northern Queensland, Systematics and Geography of Plants, 2004, 74:129-132.",{"id":18,"text":507,"url":18,"identifiers":18},"Stephenson S. L., Estrada-Torres A., Schnittler M., Lado C., Wrigley De Basanta D., Ogata N., Distribution and ecology of Myxomycetes in the foreststs of Yucatan, In: Gomez-Pompa A., Allen M. F., Fedick S. L. & Jiminez-Osornio J. J. (eds.): The Lowland Maya area. Three Millenia at the Human-Wildland Interface, Food Product press, New York, London, Oxford, 2003, pp. 241-259.",{"id":18,"text":509,"url":18,"identifiers":18},"Fedorova N. A., Novozhilov Y. K., Gmoshinskiy V. I., Diversity of slime moulds (Myxomycetes = Myxogastrea) in mountain tropical forests of the Phia Oac Reserve (northern Vietnam) revealed by moist chamber cultures, Mikologiya I Fitopatologiya, 2020, 54:288-298.",{"id":18,"text":511,"url":18,"identifiers":18},"Novozhilov Y. K., Erastova D. A., Shchepin O. N., Schnittler M., Aleksandrova A. V., Popov E. S., Kuznetsov A. N., Myxomycetes associated with monsoon lowland tropical forests in southern Vietnam, Nova Hedwigia, 2017a, 104:143-182.",{"id":18,"text":513,"url":18,"identifiers":18},"Leontyev D. V., Schnittler M., Stephenson S. L., Novozhilov Y. K., Shchepin, O. N., Towards a phylogenetic classification of the Myxomycetes, Phytotaxa, 2019, 399:209-238.",{"id":18,"text":515,"url":18,"identifiers":18},"Maimoni-Rodella R. C. S., Cavalcanti L. D. H, Myxomycetes sobre inflorescências e folhas vivas de lírio-do-brejo (Hedychium coronarium Koenig, Zingiberaceae): registro de um novo substrato, Brazilian Journal of Botany, 2006, 29:331-333.",{"id":18,"text":517,"url":18,"identifiers":18},"Новожилов Ю. К., Определитель грибов России, Отдел Слизевики, Санкт-Петербургская издательско-книготорговая фирма ‘Наука’, 1993, 288 c.",{"id":18,"text":519,"url":18,"identifiers":18},"Colwell R. K., EstimateS 9.10 User's Guide, 2004.",{"id":18,"text":521,"url":18,"identifiers":18},"Chao A., Chazdon R. L., Colwell R. K., Shen T. J., Abundance-based similarity indices and their estimation when there are unseen species in samples, Biometrics, 2006, 62:361-371.",{"id":18,"text":523,"url":18,"identifiers":18},"Magurran A. E., Measuring biological diversity, Blackwell Publishing, Malden, 2004, 264 p.",{"id":18,"text":525,"url":18,"identifiers":18},"Stephenson S. L., Kalyanasundaram I., Lakhanpal T. N., A comparative biogeographical study of myxomycetes in the mid-Appalachians of eastern North America and two regions of India, Journal of Biogeography, 1993, 20:645-657.",{"id":18,"text":527,"url":18,"identifiers":18},"De Cáceres M., Legendre P., Associations between species and groups of sites: indices and statistical inference, Ecology, 2009, 90:3566-3574.",{"id":529,"createTime":530,"updateTime":530,"relativeEntities":531,"slug":532,"properties":533,"entityType":43,"verifyStatus":44,"verifyTime":542,"verifyNote":46,"languages":543,"translateLanguages":18,"viewCount":19,"primaryUrl":544,"fullTextUrl":545,"authors":546,"publicationType":123,"publisherRelationship":605,"citationCount":18,"citationInfo":18,"publishDate":138,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":618,"openAccess":18,"references":619,"isForceReanalyzing":174},"e062a275-b8d9-47bd-81ed-d3b54c95c9a6","2026-06-29T11:32:52.757+00:00",[],"NGHI%C3%8AN-C%E1%BB%A8U-%E1%BA%A2NH-H%C6%AF%E1%BB%9ENG-C%E1%BB%A6A-H%E1%BA%A0T-NANO-COBALT-HO%C3%81-TR%E1%BB%8A-0-L%C3%8AN-H%C3%80M-L%C6%AF%E1%BB%A2NG-CHLOROPHYLL-A-V%C3%80-C%C3%81C-TH%C3%94NG-S%E1%BB%90-QUANG-H%E1%BB%A2P-C%E1%BB%A6A-C%C3%82Y-%C4%90%E1%BA%ACU-T%C6%AF%C6%A0NG-Glycine-max-L-MERRILL-DT96-",{"abstract":534,"title":536,"keywords":538,"doi":540},{"VI":535},"RESEARCH ON the effectS of ZEROVALENT COBALT NANOPARTICLE ON THE CHLOROPHYLL A CONTENT AND PHOTOSYNTHETIC PARAMETERS OF SOYBEAN Glycine max (L) MERRILL “DT96”The application of nanotechnology in agriculture is a promising way to increase crop production and yield, reduce the amount of fertilizer, increase the storage time of the productions and protect the environmental sustainability. Soybean is one of the four important crops of Vietnam's agriculture and a source of food for humans and domestic animals. In this study, the effect of zerovalent cobalt nanoparticles with different concentrations (0; 0.17; 0.33 and 100 mg\u002Fkg seed) on chlorophyll a content and photosynthesis parameters of soybean plant Glycine max (L). Merr. DT96 which was planted in the autumn-winter crop in Xuan Hoa, Phuc Yen, Vinh Phuc were carried out. The obtained results showed that zerovalent cobalt nanoparticles had a positive effect on the photosynthetic parameters of soybean plants. At the used concentration of 0.33 mg cobalt\u002Fkg seed, the chlorophyll a content and photosynthetic parameters of soybean were the highest and there was a statistically significant difference compared with control. The chlorophyll a content tends to increase gradually and reaches the maximum value of 1.77 ± 0.05 mg\u002Fg fresh leaves after 40 days of sowing. The parameters related to chlorophyll fluorescence such as Fo (initial fluorescence), Fm (maximal fluorescence), Fv\u002FFm (maximal photochemical efficiency), effective quantum yield of photosystem II (FPSII), photosynthetic electron transport rate (ETR), Pn (net photosynthetic rate) of soybean seedlings which were treated by cobalt nanoparticles were higher than the control (except at the concentration of 100 mg\u002Fkg). The soybean seeds treated by cobalt nanoparticles had increased the chlorophyll a content of leaves and photosynthetic efficiency, leading to improve productivity of soybean.",{"VI":537},"NGHIÊN CỨU ẢNH HƯỞNG CỦA HẠT NANO COBALT HOÁ TRỊ 0 LÊN HÀM LƯỢNG CHLOROPHYLL A VÀ CÁC THÔNG SỐ QUANG HỢP CỦA CÂY ĐẬU TƯƠNG Glycine max (L). MERRILL “DT96”",{"VI":539},"Chlorophyll a,chlorophyll fluorescence,cobalt zerovalent nanoparticles,Glycine max (L). Merr. DT96,Nanotechnology,huỳnh quang chlorophyll,nano cobalt hoá trị 0,công nghệ nano",{"VOID":541},"10.58334\u002Fvrtc.jtst.n26.20","2026-06-29T11:32:52.756+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F378","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F378\u002F297",[547,562,577,592],{"id":548,"sortIndex":19,"researcher":18,"roles":549,"affiliations":550,"properties":559},"e7bde655-7966-4062-9be6-c9d8190c51a0",[],[551],{"id":552,"sortIndex":19,"affiliation":553,"properties":18},"6804b3ea-ee65-4cda-a248-eec363e79096",{"id":552,"createTime":18,"updateTime":18,"relativeEntities":554,"slug":18,"properties":555,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":558,"statistic":18},[],{"title":556},{"VI":557},"Viện Công nghệ sinh học, Viện Hàn lâm Khoa học và Công nghệ Việt Nam",[],{"title":560},{"VI":561},"Lưu Thị Tâm",{"id":563,"sortIndex":69,"researcher":18,"roles":564,"affiliations":565,"properties":574},"de02526c-0e4d-449a-aa0b-db1924e3246e",[],[566],{"id":567,"sortIndex":19,"affiliation":568,"properties":18},"b55ed219-9340-41f4-88d1-54e4abd90816",{"id":567,"createTime":18,"updateTime":18,"relativeEntities":569,"slug":18,"properties":570,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":573,"statistic":18},[],{"title":571},{"VI":572},"Trường Đại học Sư phạm Hà Nội 2",[],{"title":575},{"VI":576},"Phạm Thị Thu Hiền",{"id":578,"sortIndex":83,"researcher":18,"roles":579,"affiliations":580,"properties":589},"30cefdb1-b319-4ec5-bb81-010e3bad0e11",[],[581],{"id":582,"sortIndex":19,"affiliation":583,"properties":18},"24c6c2fd-df52-4beb-ae60-563279940a74",{"id":582,"createTime":18,"updateTime":18,"relativeEntities":584,"slug":18,"properties":585,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":588,"statistic":18},[],{"title":586},{"VI":587},"Trung Tâm Nhiệt đới Việt - Nga",[],{"title":590},{"VI":591},"Vũ Thị Loan",{"id":593,"sortIndex":97,"researcher":18,"roles":594,"affiliations":595,"properties":602},"fbe71d98-001d-4f34-925f-bf9e610b78a5",[],[596],{"id":552,"sortIndex":19,"affiliation":597,"properties":18},{"id":552,"createTime":18,"updateTime":18,"relativeEntities":598,"slug":18,"properties":599,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":601,"statistic":18},[],{"title":600},{"VI":557},[],{"title":603},{"VI":604},"Đặng Diễm Hồng",{"url":18,"publisher":606,"properties":614},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":607,"slug":10,"properties":608,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":611,"manageAffiliations":612,"indexDatabases":613,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":609,"title":610},{"VOID":13},{"VOID":15},[],[],[],{"issue":615,"pages":616},{"VOID":135},{"VOID":617},"199-208",[],[620,622,624,626,628,630,632,634,636,638,640,642],{"id":18,"text":621,"url":18,"identifiers":18},"Balai C. M., Majumdar S. P., Kumawat B. L., Effect of soil compaction, potassium and cobalt on growth and yield of cowpea, Indian Journal of Pulses Research, 2005, 18(1):38-39.",{"id":18,"text":623,"url":18,"identifiers":18},"Ngo Q. B., Dao T. H., Nguyen H. C., Tran X. T., Nguyen T. V., Khuu T. D., Huynh T. H., Effects of nanocrystalline powders (Fe, Co and Cu) on the germination, growth, crop yield and product quality of soybean (Vietnamese species DT-51), Adv. Nat. Sci.: Nanosci Nanotechnol, 2014, 5: 015016, 7pp.",{"id":18,"text":625,"url":18,"identifiers":18},"Phan Hoàng Tuấn, Hoàng Thị Lan Anh, Lưu Thị Tâm, Ngô Thị Hoài Thu, Đào Trọng Hiền, Nguyễn Hoài Châu, Đặng Diễm Hồng, Đánh giá hiệu quả tác động của hạt nano cobalt hóa trị 0 lên sinh trưởng và các thông số quang hợp của cây đậu tương Glycine max (L). Merril “DT51” ở các giai đoạn sinh trưởng khác nhau, NXB. Khoa học tự nhiên và Công nghệ, Hà Nội, 2018, tr.331- 1338.",{"id":18,"text":627,"url":18,"identifiers":18},"Phan Hoàng Tuấn, Lưu Thị Tâm, Hoàng Thị Lan Anh, Ngô Thị Hoài Thu, Nguyễn Hoài Châu, Đặng Diễm Hồng, Nghiên cứu ảnh hưởng của hạt nano coban dạng đơn lẻ và hỗn hợp lên sự thay đổi các thông số quang hợp và hoạt độ của enzyme chống ôxy hóa ở cây đậu tương Glycine max Merr. (DT26), Tạp chí Sinh học, 2018, 40(2):333-343.",{"id":18,"text":629,"url":18,"identifiers":18},"Dang D. H., Hoang T. L. A., Luu T. T., Show P. L., Leong H. Y., Effects of nanoscale zerovalent cobalt on growth and photosynthetic parameters of soybean Glycine max (L.) Merr. DT26 at different stages, BMC Energy, 2019, 1(1):1-6.",{"id":18,"text":631,"url":18,"identifiers":18},"Lê Thị Thu Hiền, Trần Thị Trường, Đánh giá ảnh hưởng của việc xử lý hạt đậu tương bằng nano cobalt trước khi gieo lên sự sinh trưởng, phát triển, năng suất và chất lượng của giống đậu tương ĐT12, Tạp chí Sinh học, 2019, 41(2):61-70.",{"id":18,"text":633,"url":18,"identifiers":18},"Phan Thị Thu Hiền, Hà Đức Chính, Phạm Phương Thu, Đỗ Thu Thảo, Bùi Thị Thủy, Hà Đăng Chiến, Kiều Thị Hương Mai, Nguyễn Văn Đính, Bước đầu nghiên cứu ảnh hưởng của nano coban đến một số đặc tính nông sinh học của giống Đậu tương DT96 trồng tại Vĩnh Phúc, Tạp chí Khoa học và công nghệ Việt Nam, 2022, 64(7):44-48.",{"id":18,"text":635,"url":18,"identifiers":18},"Lichtenthale H. K., Chlorophylls and carotenoids pigments of photosynthetic, Methods Enzymol., 1994, 148:350-382.",{"id":18,"text":637,"url":18,"identifiers":18},"Wellburn A. R., The spectral determination of chlorophylls a and b, as well as total carotenoids, using various solvents with spectrophotometers of dijerent resolution, J. Plant. Physiol., 1994, 144:307-313.",{"id":18,"text":639,"url":18,"identifiers":18},"Qiu Z., Wang L., Zhou Q., Effects of bisphenol A on growth, photosynthesis and chlorophyll fluorescence in above ground organs of soybean seedlings, Chemosphere, 2013, 90:1274-1280.",{"id":18,"text":641,"url":18,"identifiers":18},"Abdul Jaleel C., Jayakumar K., Chang-Xing Z., Azooz M. M., Antioxidant potentials protect Vigna radiata (L.) Wilczek plants from soil cobalt stress and improve growth and pigment composition, Plant. Omics. J., 2009, 2:120-126.",{"id":18,"text":643,"url":18,"identifiers":18},"Sarropoulou V., Dimessi- Theriou K., Therios I., Effect of the ethylene inhibitors silver nitrate, silver sulfate, and cobalt chloride on micropropagation and biochemical parameters in the cherry rootstocks CAB-6P and Gisela 6, Turk. J. Biol., 2016, 40:670-83.",{"id":645,"createTime":646,"updateTime":646,"relativeEntities":647,"slug":648,"properties":649,"entityType":43,"verifyStatus":44,"verifyTime":658,"verifyNote":46,"languages":659,"translateLanguages":18,"viewCount":19,"primaryUrl":660,"fullTextUrl":661,"authors":662,"publicationType":123,"publisherRelationship":760,"citationCount":18,"citationInfo":18,"publishDate":774,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":775,"openAccess":18,"references":776,"isForceReanalyzing":174},"e776df4e-76cb-485e-9c6f-fb6260b514e1","2026-06-29T11:32:52.659+00:00",[],"B%C6%AF%E1%BB%9AC-%C4%90%E1%BA%A6U-X%C3%82Y-D%E1%BB%B0NG-B%E1%BB%98-M%E1%BA%AAU-C%C3%81C-LO%C3%80I-TH%E1%BB%B0C-V%E1%BA%ACT-KHU-B%E1%BA%A2O-T%E1%BB%92N-THI%C3%8AN-NHI%C3%8AN-S%C3%94NG-THANH-T%E1%BB%88NH-QU%E1%BA%A2NG-NAM",{"abstract":650,"title":652,"keywords":654,"doi":656},{"VI":651},"PREPARING THE DRY PLANT SPECIMENS COLLECTION OF SONG THANH NATURAL RESERVE AREA, QUANG NAM PROVINCESong Thanh Nature Reserve (STNR) is located in Nam Giang and Phuoc Son districts, within Quang Nam province along the Vietnam-Laos border, included 93,249 ha of core zone and 108,398 ha of buffer zone. A total of 831 plant species were recognized in 1997 and 1999 by WWF. This study was implemented intend for building the plant specimen, which was operated in the core and buffer zone of Song Thanh Nature Reserve located in La Dee Commune, Nam Giang District. Total of 71 species, belonging to 40 families were represented in specimens; Fam. Rubiaceae and Fam. Euphorbiaceae are considered as the dominant species; Fokienia hodginsii (Dunn) A. Henry &amp; HH Thomas and Helixanthera annamica Danser to be listed among the endangered species in the Vietnam Red Data Book (2007); 10 species of valuable medicinal plants, 3 species of valuable timber, 2 species of fruit trees.",{"VI":653},"BƯỚC ĐẦU XÂY DỰNG BỘ MẪU CÁC LOÀI THỰC VẬT KHU BẢO TỒN THIÊN NHIÊN SÔNG THANH, TỈNH QUẢNG NAM",{"VI":655},"Các loài thực vật,đa dạng loài,sông Thanh",{"VOID":657},"10.58334\u002Fvrtc.jtst.n19.06","2026-06-29T11:32:52.658+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F549","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F549\u002F459",[663,678,691,704,719,732,746],{"id":664,"sortIndex":19,"researcher":18,"roles":665,"affiliations":666,"properties":675},"65053050-9e95-4631-b481-8053e64f3809",[],[667],{"id":668,"sortIndex":19,"affiliation":669,"properties":18},"c00aa895-d8af-4d99-b201-9139b9bf7743",{"id":668,"createTime":18,"updateTime":18,"relativeEntities":670,"slug":18,"properties":671,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":674,"statistic":18},[],{"title":672},{"VI":673},"Viện Sinh thái Nhiệt đới, Trung tâm Nhiệt đới Việt - Nga",[],{"title":676},{"VI":677},"Phạm Mai 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Duy",{"id":692,"sortIndex":83,"researcher":18,"roles":693,"affiliations":694,"properties":701},"2e36557f-8ee8-498a-a213-bd902136868d",[],[695],{"id":668,"sortIndex":19,"affiliation":696,"properties":18},{"id":668,"createTime":18,"updateTime":18,"relativeEntities":697,"slug":18,"properties":698,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":700,"statistic":18},[],{"title":699},{"VI":673},[],{"title":702},{"VI":703},"Nguyễn Vũ 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Đắc",{"id":747,"sortIndex":748,"researcher":18,"roles":749,"affiliations":750,"properties":757},"0ab49341-aa36-46ff-8b54-bbd698d42837",6,[],[751],{"id":668,"sortIndex":19,"affiliation":752,"properties":18},{"id":668,"createTime":18,"updateTime":18,"relativeEntities":753,"slug":18,"properties":754,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":756,"statistic":18},[],{"title":755},{"VI":673},[],{"title":758},{"VI":759},"Nguyễn Đăng Hội",{"url":18,"publisher":761,"properties":769},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":762,"slug":10,"properties":763,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":766,"manageAffiliations":767,"indexDatabases":768,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":764,"title":765},{"VOID":13},{"VOID":15},[],[],[],{"issue":770,"pages":772},{"VOID":771},"19",{"VOID":773},"48-62","2025-02-27",[],[777,779,781,783,785,787,789,791,793,795],{"id":18,"text":778,"url":18,"identifiers":18},"Nguyễn Văn An, Nguyễn Nghĩa Thìn, Nguyễn Thị Kim Anh, Đa dạng thực vật ở khu bảo tồn Sông Thanh, tỉnh Quảng Nam, Tạp chí Khoa học Lâm nghiệp, 2011b, 2:1-8.",{"id":18,"text":780,"url":18,"identifiers":18},"Nguyễn Văn An, Nguyễn Nghĩa Thìn, Nguyễn Thị Kim Anh, Phân tích các yếu tố địa lý và giá trị tài nguyên của hệ thực vật Sông Thanh, tỉnh Quảng Nam, Hội nghị Khoa học toàn quốc về Sinh thái và Tài nguyên sinh vật lần 4, 2011, tr. 1069-1074.",{"id":18,"text":782,"url":18,"identifiers":18},"Phạm Hoàng Hộ, Cây cỏ Việt Nam, An Illustrated Flora of Vietnam, Montréal- published by the author, 1991-1993, tập I (cuốn 1, 2), tập II (cuốn 1, 2), tập III (cuốn 1, 2).",{"id":18,"text":784,"url":18,"identifiers":18},"Wu Z., Raven P.H., Heng D.Y., Flora of China, Illustrions, Science Press (Beijing) & Missousi Botanical Garend (St. Louis), 2009-2013, tập 2-25.",{"id":18,"text":786,"url":18,"identifiers":18},"Aubreville A., Morat P., Flore du Cambodge, du Laos et du Vietnam, 19602018, tập 1-38.",{"id":18,"text":788,"url":18,"identifiers":18},"Tahktajan A., Diversity and Classification of Flowering Plants. Springer Science & Business Media. Columbia University Press, New York, 1997.",{"id":18,"text":790,"url":18,"identifiers":18},"Bộ Khoa học và Công nghệ, Sách đỏ Việt Nam - Phần Thực vật, NXB Khoa học và Kỹ thuật, Hà Nội, 2007.",{"id":18,"text":792,"url":18,"identifiers":18},"Nghị định số 32\u002F2006\u002FNĐ-CP ngày 30 tháng 3 năm 2006 của Chính phủ về việc Quản lý thực vật rừng, động vật rừng nguy cấp, quý, hiếm.",{"id":18,"text":794,"url":18,"identifiers":18},"Võ Văn Chi, Từ điển cây thuốc Việt Nam, NXB Y học, Hà Nội, 2012, Tập 1, 2.",{"id":18,"text":796,"url":18,"identifiers":18},"Nguyễn Khắc Khôi, Vũ Xuân Phương, Đỗ Thị Xuyến, Đỗ Văn Hài, Nguyễn Thế Cường, Trần Thị Phương Anh, Nguyễn Thị Thanh Hương, Dương Thị Hoàn, Dương Đức Huyến, Phạm Văn Thế, Trần Minh Hợi, Đa dạng thành phần loài thực vật bậc cao có mạch tại KBTTN Hoàng Liên, Văn Bàn, Lào Cai, Hội nghị Khoa học toàn quốc về Sinh thái và Tài nguyên sinh vật lần 4, 2011, tr. 668-673.",{"id":798,"createTime":799,"updateTime":799,"relativeEntities":800,"slug":801,"properties":802,"entityType":43,"verifyStatus":44,"verifyTime":811,"verifyNote":46,"languages":812,"translateLanguages":18,"viewCount":19,"primaryUrl":813,"fullTextUrl":814,"authors":815,"publicationType":123,"publisherRelationship":831,"citationCount":18,"citationInfo":18,"publishDate":845,"publishYear":139,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":846,"openAccess":18,"references":847,"isForceReanalyzing":174},"a2d7cb28-4bbe-4302-bac5-b1f007168873","2026-06-29T07:12:01.444+00:00",[],"C%C3%81C-CH%E1%BA%BE-PH%E1%BA%A8M-PEPTIT-%C4%90I%E1%BB%80U-H%C3%92A-SINH-H%E1%BB%8CC-TRONG-D%E1%BB%B0-PH%C3%92NG-V%C3%80-%C4%90I%E1%BB%80U-TR%E1%BB%8A-B%E1%BB%86NH-M%C3%83N-T%C3%8DNH",{"abstract":803,"title":805,"keywords":807,"doi":809},{"VI":804},"Các chế phẩm peptit điều hòa sinh học (ĐHSH) do Viện Lão khoa và Điều hòa sinh học Saint Petersburg\u002FLiên bang Nga sản xuất được tách chiết từ các tế bào cơ quan, phủ tạng của động vật móng guốc (bê non dưới 12 tháng tuổi hoặc lợn sữa) như: Não, tim, dạ dày, sụn khớp, tuyến tùng, tuyến ức, tụy, bàng quang... Các chế phẩm peptit ĐHSH đã được cấp phép lưu hành, sử dụng rộng rãi tại Liên bang Nga và các nước Châu Âu dưới dạng thực phẩm chức năng từ những năm 70, ban đầu chỉ ưu tiên sử dụng cho các đối tượng lao động trong môi trường khắc liệt như: Tổng công ty dầu khí, bộ đội Không quân, Hải quân. Năm 2002, Viện Lão khoa và Điều hòa sinh học Saint-Petersburg\u002FLiên bang Nga phối hợp với Trung tâm Nhiệt đới Việt - Nga hỗ trợ điều trị tăng cường miễn dịch cho 50 cựu chiến binh tại Quận Cầu Giấy, Hà Nội thu được kết quả rất khả quan. Từ năm 2008 - 2010, chương trình khắc phục hậu quả chiến tranh hóa học do Mỹ tiến hành tại Miền Nam Việt Nam (Chương trình 33) của Nhà nước giao cho Trung tâm Nhiệt đới Việt - Nga\u002FBộ Quốc phòng thực hiện, dự án hỗ trợ điều trị cho 300 Cựu chiến binh bị phơi nhiễm với chất độc Da cam\u002FDioxin tại tỉnh Thái Bình mắc 2 nhóm bệnh là: Phì đại lành tính tuyến tiền liệt và suy giảm miễn dịch, dự án đã nghiệm thu kết quả và được Hội đồng Khoa học công nghệ Bộ Quốc phòng đánh giá cao.",{"VI":806},"CÁC CHẾ PHẨM PEPTIT ĐIỀU HÒA SINH HỌC TRONG DỰ PHÒNG VÀ ĐIỀU TRỊ BỆNH MÃN TÍNH",{"VI":808},"peptit,điều hoà sinh học,chế phẩm peptit,chất độc Da cam\u002FDioxin,Trung tâm Nhiệt đới Việt - Nga,peptide",{"VOID":810},"10.58334\u002Fvrtc.jtst.n08.12","2026-06-29T07:12:01.443+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F494","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F494\u002F404",[816],{"id":817,"sortIndex":19,"researcher":18,"roles":818,"affiliations":819,"properties":828},"17e4bb65-653b-4c4e-8159-559d37c870a4",[],[820],{"id":821,"sortIndex":19,"affiliation":822,"properties":18},"c996395d-bccf-4987-b1fe-329997891c3e",{"id":821,"createTime":18,"updateTime":18,"relativeEntities":823,"slug":18,"properties":824,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":827,"statistic":18},[],{"title":825},{"VI":826},"Viện Y sinh nhiệt đới, Trung tâm Nhiệt đới Việt - Nga",[],{"title":829},{"VI":830},"Hoàng Văn Huấn",{"url":18,"publisher":832,"properties":840},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":833,"slug":10,"properties":834,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":837,"manageAffiliations":838,"indexDatabases":839,"url":23,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":24,"analyzePriority":18},[],{"issn":835,"title":836},{"VOID":13},{"VOID":15},[],[],[],{"issue":841,"pages":843},{"VOID":842},"08",{"VOID":844},"98-102","2025-01-20",[],[848,850,852,854],{"id":18,"text":849,"url":18,"identifiers":18},"Hoàng văn Huấn, Phạm Khắc Linh, Nguyễn Như Nghĩa và cs., Kết quả ứng dụng chế phẩm peptit điều hòa sinh học hỗ trợ điều trị cho những người có tiền sử tiếp xúc với chất độc Da cam\u002FDioxin bị phì đại lành tính tuyến tiền liệt, Tạp chí KH và CN nhiệt đới số 01, Trung tâm Nhiệt đới Việt - Nga, 2010, tr.92.",{"id":18,"text":851,"url":18,"identifiers":18},"Hoàng văn Huấn, Phạm Khắc Linh, Nguyễn Như Nghĩa và cs., Kết quả ứng dụng chế phẩm peptit điều hòa sinh học hỗ trợ điều trị nâng cao sức khỏe cho nạn nhân chất độc Da cam\u002FDioxin bị suy giảm miễn dịch, Tạp chí KH&CN Nhiệt đới số 02, Trung tâm Nhiệt đới Việt - Nga, 2010, tr.78.",{"id":18,"text":853,"url":18,"identifiers":18},"Khavinson V.K. & Morozov V.G. Peptides of pineal gland and thymus prolong human life, Neuroendocrinology Letter, 2003, 24(3\u002F4), p.233-240.",{"id":18,"text":855,"url":18,"identifiers":18},"Kozina L.S., Arutjunyan A.V. & Khavinson V.K., Antioxidant properties of geroprotective peptides of the pineal gland, Arch Gerontol Geriatr, 2007, 44(1):213-216.",{"id":857,"createTime":858,"updateTime":858,"relativeEntities":859,"slug":860,"properties":861,"entityType":43,"verifyStatus":44,"verifyTime":872,"verifyNote":46,"languages":873,"translateLanguages":18,"viewCount":19,"primaryUrl":874,"fullTextUrl":875,"authors":876,"publicationType":123,"publisherRelationship":1002,"citationCount":18,"citationInfo":18,"publishDate":1018,"publishYear":1019,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":1020,"openAccess":18,"references":1021,"isForceReanalyzing":174},"65ce79df-4b1a-420f-9e29-971e7249112a","2026-06-29T07:00:45.330+00:00",[],"T%E1%BA%A1o-d%C3%B2ng-v%C3%A0-b%C6%B0%E1%BB%9Bc-%C4%91%E1%BA%A7u-%C4%91%C3%A1nh-gi%C3%A1-m%E1%BB%A9c-%C4%91%E1%BB%99-bi%E1%BB%83u-hi%E1%BB%87n-c%E1%BB%A7a-Hcp1-v%C3%A0-AhpC-t%C3%A1i-t%E1%BB%95-h%E1%BB%A3p-c%E1%BB%A7a-Burkholderia-pseudomallei-trong-Escherichia-coli",{"abstract":862,"title":865,"keywords":868,"doi":870},{"VI":863,"EN":864},"Bệnh melioidosis là bệnh nhiễm trùng nguy hiểm do vi khuẩn Burkholderia pseudomallei gây ra. Các biểu hiện lâm sàng của bệnh không đặc hiệu, khiến việc chẩn đoán sớm medioidosis gặp nhiều khó khăn và dễ dẫn đến điều trị chậm trễ, làm tăng nguy cơ tử vong. Các xét nghiệm huyết thanh học sử dụng kháng nguyên tái tổ hợp được xem là hướng tiếp cận tiềm năng nhờ khả năng phát hiện nhanh kháng thể đặc hiệu kháng B. pseudomallei. Nhiều protein của vi khuẩn này đã được khảo sát nhằm phát triển kháng nguyên phục vụ chẩn đoán melioidosis. Trong số đó, Hcp1 và AhpC được đặc biệt quan tâm nhờ khả năng phản ứng đặc hiệu với kháng thể trong huyết thanh bệnh nhân. Nghiên cứu này nhằm tạo dòng và biểu hiện các gen Hcp1, AhpC, có kích thước lần lượt 510 bp và 549 bp, trong hệ biểu hiện Escherichia coli&nbsp;sử dụng vector pET32a(+). Vector mang cấu trúc dung hợp TrxA-His tag, nhằm cải thiện độ hòa tan của protein và tạo thuận lợi cho quá trình tinh sạch. Kết quả phân tích bằng SDS-PAGE và Western blot xác nhận sự biểu hiện của hai protein đích với kích thước tương ứng khoảng 36 kDa và 38 kDa. Khảo sát tính hòa tan ghi nhận sự khác biệt rõ rệt giữa hai protein: AhpC hiện diện chủ yếu ở dạng hòa tan, trong khi Hcp1 tập trung phần lớn ở phân đoạn không tan. Các kết quả này khẳng định tính khả thi của hệ thống biểu hiện, đồng thời nhấn mạnh sự cần thiết phải tối ưu điều kiện nuôi cấy để nâng cao khả năng thu nhận protein Hcp1 dạng hòa tan, tạo nền tảng cho các bước tinh sạch và phát triển kháng nguyên tái tổ hợp phục vụ cho chẩn đoán trong các nghiên cứu tiếp theo.","Cloning and preliminary evaluation of recombinant Hcp1 and AhpC expression from Burkholderia pseudomallei in Escherichia coliMelioidosis is a severe infectious disease caused by Burkholderia pseudomallei. Nonspecific clinical manifestations make early diagnosis of melioidosis challenging and may lead to delayed treatment, thereby increasing the risk of mortality. Serological assays using recombinant antigens are considered a promising approach due to their ability to rapidly detect antibodies specific to B. pseudomallei. Several proteins of this bacterium have been investigated for the development of diagnostic antigens for melioidosis. Among them, Hcp1 and AhpC have attracted particular attention due to their strong and specific reactivity with antibodies in the serum of patients with melioidosis.&nbsp;This study aimed to clone and express the Hcp1 and AhpC genes, with sizes of 510 bp and 549 bp, respectively, in an Escherichia coli expression system using the pET32a(+) vector. The vector contains a TrxA–His tag fusion construct to improve protein solubility and facilitate purification. SDS-PAGE and Western blot analyses confirmed the expression of the target proteins, with estimated molecular weights of approximately 36 kDa and 38 kDa, respectively. Solubility assessment revealed a marked difference between the two recombinant proteins: AhpC was predominantly present in the soluble fraction, whereas Hcp1 was largely confined to the insoluble fraction. These findings confirm the feasibility of the expression system and highlight the need to optimize culture conditions to improve the recovery of soluble Hcp1, providing a basis for subsequent purification and the development of recombinant antigens for diagnostic applications.Keywords: AhpC; Burkholderia pseudomallei; Hcp1; melioidosis; recombinant.&nbsp;",{"EN":866,"VI":867},"Cloning and preliminary evaluation of recombinant Hcp1 and AhpC expression from Burkholderia pseudomallei in Escherichia coli","Tạo dòng và bước đầu đánh giá mức độ biểu hiện của Hcp1 và AhpC tái tổ hợp của Burkholderia pseudomallei trong Escherichia coli",{"VI":869},"AhpC,Burkholderia pseudomallei,Hcp1,melioidosis,tái tổ hợp",{"VOID":871},"10.58334\u002Fvrtc.jtst.vol.015.879","2026-06-29T07:00:45.328+00:00",[48],"https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fview\u002F879","https:\u002F\u002Ftapchikhcnnd.mod.gov.vn\u002Findex.php\u002Ftckhcnnd\u002Farticle\u002Fdownload\u002F879\u002F666",[877,892,905,918,931,946,959,974,988],{"id":878,"sortIndex":19,"researcher":18,"roles":879,"affiliations":880,"properties":889},"e49f5796-c740-4c1f-8b98-a8a66bcc5c36",[],[881],{"id":882,"sortIndex":19,"affiliation":883,"properties":18},"6bb3dc07-4c38-4535-93af-bcd230832461",{"id":882,"createTime":18,"updateTime":18,"relativeEntities":884,"slug":18,"properties":885,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":888,"statistic":18},[],{"title":886},{"VI":887},"Trung tâm Nhiệt đới Việt - 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J. Wiersinga, et al., Melioidosis, Nature Reviews Disease Primers, Vol. 4, p.17107, 2018 Feb 1. DOI: 10.1038\u002Fnrdp.2017.107",{"id":18,"text":1025,"url":18,"identifiers":18},"L. Pang, et al., Melioidosis, Singapore, 2003–2014, Emerging Infectious Diseases, Vol. 4, No. 1, pp.140-143, 2018. DOI: 10.3201\u002Feid2401.161449",{"id":18,"text":1027,"url":18,"identifiers":18},"Nguyễn Duy Bình, Đặng Thị Hoài Thu và Trần Xuân Chương, Nghiên cứu chùm ca bệnh melioidosis tại miền Trung Việt Nam sau đợt lũ lịch sử năm 2020, Tạp chí Y Dược học, tập 12, số 4, 2022. DOI: 10.34071\u002Fjmp.2022.4.16",{"id":18,"text":1029,"url":18,"identifiers":18},"Lê Quốc Hũng, Đỗ Thị Ngọc Khánh, Bệnh nhân melioidosis thể nhiễm khuẩn huyết ở một bệnh viện tuyến cuối miền Nam Việt Nam: Đặc điểm lâm sàng và điều trị, Tạp chí Truyền nhiễm Việt Nam, Vol. 2, No. 50, pp. 131-138, 2025. DOI: 10.59873\u002Fvjid.v2i50.476",{"id":18,"text":1031,"url":18,"identifiers":18},"M. H. Norris et al., Expanding the molecular epidemiology of melioidosis in North Central Vietnam, Plos Neglected Tropical Diseases, Vol. 20, No. 2, p. e0013945, 2026. DOI: 10.1371\u002Fjournal.pntd.0013945",{"id":18,"text":1033,"url":18,"identifiers":18},"I. Gassiep et al., Laboratory diagnosis of melioidosis, Plos Neglected Tropical Diseases, Vol. 19, No. 12, p.e0013761, 2025. DOI: 10.1371\u002Fjournal.pntd.0013761",{"id":18,"text":1035,"url":18,"identifiers":18},"K. Selvam , M. A. Najib, M. F. Khalid, A. Harun and I. Aziah, Performance of antibody-detection tests for human melioidosis: A systematic review and meta-analysis, Malaysian Journal of Medical Sciences, Vol. 31, No. 6, pp. 34-56, 2024. DOI: 10.21315\u002Fmjms2024.31.6.4",{"id":18,"text":1037,"url":18,"identifiers":18},"G. E. Wagner&nbsp; et al., Melioidosis DS rapid test: A standardized serological dipstick assay with increased sensitivity and reliability due to multiplex detection, Plos Neglected Tropical Diseases, Vol. 14, No. 8, p. e0008452, 2020. DOI: 10.1371\u002Fjournal.pntd.0008452",{"id":18,"text":1039,"url":18,"identifiers":18},"P. Amornchai et al., Evaluation of antigen-detecting and antibody-detecting diagnostic test combinations for diagnosing melioidosis, Plos Neglected Tropical Diseases, Vol. 15, No. 11, p. e0009840, 2021. DOI: 10.1371\u002Fjournal.pntd.0009840",{"id":18,"text":1041,"url":18,"identifiers":18},"Q. T. L. Tran et al., Clinical utility of combined whole-cell antigen and recombinant hemolysis co-regulated protein 1-enzyme-linked immunosorbent assays reveals underdiagnosed cases of melioidosis in Vietnam, American Journal of Tropical Medicine and Hygiene, Vol. 107, No. 3, pp. 585–91, 2022. DOI: 10.4269\u002Fajtmh.21-1143",{"id":18,"text":1043,"url":18,"identifiers":18},"P. Wu et al., Anti-Hcp1 monoclonal antibody is protective against Burkholderia pseudomallei via recognizing amino acids at Asp95-Leu114, Pathogens, Vol. 13, No. 1, p. 43, 2024. DOI: 10.3390\u002Fpathogens13010043",{"id":18,"text":1045,"url":18,"identifiers":18},"B. Zhang et al., Molecular mechanisms of AhpC in resistance to oxidative stress in&nbsp;Burkholderia thailandensis, Frontiers in Microbiology, Vol.10, p. 1483, 2019. DOI: 10.3389\u002Ffmicb.2019.01483",{"id":18,"text":1047,"url":18,"identifiers":18},"K. Selvam, M. A. Najib, M. F. Khalid, A. Harun and I. Aziah, Performance of antibody-detection tests for human melioidosis: A systematic review and meta-analysis, Malaysian Journal of Medical Sciences, Vol. 31, No. 6, p. 34-56, 2024. DOI: 10.21315\u002Fmjms2024.31.6.4",{"id":18,"text":1049,"url":18,"identifiers":18},"&nbsp;F. Du et al., Regulating the T7 RNA polymerase expression in E. coli BL21 (DE3) to provide more host options for recombinant protein production, Microbial Cell Factories, Vol. 20, No. 1, p. 189, 2021. DOI: 10.1186\u002Fs12934-021-01680-6",{"id":18,"text":1051,"url":18,"identifiers":18},"A. R. Tuttle, N. D. Trahan and M. S. Son, Growth and maintenance of Escherichia coli laboratory strains, Current Protocols, Vol. 1, No. 1, p. e20, 2021. DOI: 10.1002\u002Fcpz1.20",{"id":18,"text":1053,"url":18,"identifiers":18},"Nandi T et al., Burkholderia pseudomallei sequencing identifies genomic clades with distinct recombination, accessory, and epigenetic profiles, Genome Research, Vol. 25, No. 1, pp. 129-41, 2015. DOI: 10.1101\u002Fgr.177543.114",{"id":18,"text":1055,"url":18,"identifiers":18},"T. T Hong et al., Expression and characterization of a new serine protease inhibitory protein in Escherichia coli, Biomedical Research and Therapy, Vol. 7, No. 2, pp. 3633-3644, 2020. DOI: 10.15419\u002Fbmrat.v7i2.590",{"id":18,"text":1057,"url":18,"identifiers":18},"Trịnh Văn Toàn, Lê Ngọc Diệp, Hoàng Đăng Hiếu, Phạm Việt Hùng, Võ Viết Cường và Lê Thị Lan Anh, Khảo sát điều kiện nuôi cấy biểu hiện chuỗi nhẹ độc tố thần kinh type huyết thanh B tái tổ hợp của vi khuẩn Clostridium botulinum trong tế bào Escherichia coli BL21 (DE3), Tạp chí Khoa học và Công nghệ nhiệt đới, số 35, 2024. 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PANI was electropolymerized onto AH36 surface in an aqueous solution of 0.5 M oxalic acid containing 0.1 M anilines. The process was conducted by cyclic voltammetry (CV) under a potential window of -0.5÷1.6 V at a scan rate of 10 mV\u002Fs with scans of 3, 5 and 8, respectively. The electrochemical deposition of Cu particles onto the AH36 surface was performed using chronoamperometry (CA) in a solution containing 0.3 M NaOH, 0.15 M EDTA, and 0.02 M CuSO4 at pH 8 and a constant applied potential of -1.1 V for 180s, 360s and 720s, respectively. SEM, FT-IR showed that the PANI coating with complex binding components characterizes the structure with diverse redox states while creating an amorphous, porous structure on the surface. Meanwhile, SEM, XRD, EDS spectra showed that the Cu plating has a particle structure, densely layered and pure on the steel substrate. 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DOI: 10.1016\u002Fj.jclepro.2021.127961",{"id":18,"text":1198,"url":18,"identifiers":18},"G. Inzelt, Corrosion protection of metals by intrinsically conducting polymers, 2016, 20(5).",{"id":18,"text":1200,"url":18,"identifiers":18},"Y. Ma, B. Fan, H. Liu, G. Fan, H. Hao, and B. Yang, Enhanced corrosion inhibition of aniline derivatives electropolymerized coatings on copper: Preparation, characterization and mechanism modeling, Appl. Surf. Sci., 2020, 514:146086. DOI: 10.1016\u002Fj.apsusc.2020.146086",{"id":18,"text":1202,"url":18,"identifiers":18},"P. Yang, G.; Liu, F.; Hou, N.; Peng, S.; He, C.; Fang, Preparation of one-dimensional polyaniline nanotubes as anticorrosion coatings, Materials (Basel)., 2022, 15:3192-3202. DOI: 10.3390\u002Fma15093192",{"id":18,"text":1204,"url":18,"identifiers":18},"J. Aguirre et al., Study of poly(3,4-ethylendioxythiphene) as a coating for mitigation of biocorrosion of AISI 304 stainless steel in natural seawater, Prog. Org. Coatings, 2017, 113:175-184. DOI: 10.1016\u002Fj.porgcoat.2017.09.009",{"id":18,"text":1206,"url":18,"identifiers":18},"Y. Zhang et al., A study on corrosion protection of different polyaniline coatings for mild steel, Prog. Org. Coatings, 2017, 111:240-247. DOI: 10.1016\u002Fj.porgcoat.2017.06.015",{"id":18,"text":1208,"url":18,"identifiers":18},"L. Jiang, J. A. Syed, Y. Gao, H. Lu, and X. Meng, Electrodeposition of Ni(OH)2 reinforced polyaniline coating for corrosion protection of 304 stainless steel, Appl. Surf. Sci., 2018, 440:1011-1021. DOI: 10.1016\u002Fj.apsusc.2018.01.145",{"id":18,"text":1210,"url":18,"identifiers":18},"D. Deshpande, P.P.; Jadhav, N.G.; Gelling, V.J.; Sazou, Conducting polymers for corrosion protection: A Review., J. Coat. Technol. Res., 2014, 11:473-494. DOI: 10.1007\u002Fs11998-014-9586-7",{"id":18,"text":1212,"url":18,"identifiers":18},"G. Kear, B. D. Barker, and F. C. Walsh, Electrochemical corrosion of unalloyed copper in chloride media--a critical review, Corros. Sci., 2004, 46(1):109-135. DOI: 10.1016\u002FS0010-938X(02)00257-3",{"id":18,"text":1214,"url":18,"identifiers":18},"J. Elguindi, S. Moffitt, H. Hasman, C. Andrade, S. Raghavan, and C. Rensing, Metallic copper corrosion rates, moisture content, and growth medium influence survival of copper-ion resistant bacteria, Appl Microbiol Biotechnol, 2011, 89(6):1963-1970. DOI: 10.1016\u002FS0010-938X(02)00257-3",{"id":18,"text":1216,"url":18,"identifiers":18},"Y. Raghupathy, A. Kamboj, M. Y. Rekha, N. P. Narasimha Rao, and C. Srivastava, Copper-graphene oxide composite coatings for corrosion protection of mild steel in 3.5% NaCl, Thin Solid Films, 2017, 636:107-115. DOI: 10.1016\u002Fj.tsf.2017.05.042",{"id":18,"text":1218,"url":18,"identifiers":18},"A. Robin, J. C. P. De Santana, and A. F. Sartori, Characterization of copper-silicon nitride composite electrocoatings, J. Appl. Electrochem., 2010, 40(3):507-513. DOI: 10.1007\u002Fs10800-009-0022-0",{"id":18,"text":1220,"url":18,"identifiers":18},"A. Ibañez and E. Fatás, Mechanical and structural properties of electrodeposited copper and their relation with the electrodeposition parameters, Surf. Coatings Technol., 2005, 191(1):7-16. DOI: 10.1016\u002Fj.surfcoat.2004.05.001",{"id":18,"text":1222,"url":18,"identifiers":18},"F. Arjmand and A. Adriaens, Influence of pH and chloride concentration on the corrosion behavior of unalloyed copper in NaCl solution: A comparative study between the micro and macro scales, Materials (Basel)., 2012, 5(12):2439-2464. Doi: 10.3390\u002Fma5122439",{"id":18,"text":1224,"url":18,"identifiers":18},"A. A. Ganash, F. M. Al-Nowaiser, S. A. Al-Thabaiti, and A. A. Hermas, Comparison study for passivation of stainless steel by coating with polyaniline from two different acids, Prog. Org. Coatings, 2011, 72(3):480-485. 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