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N.D., H.L. Bui, N.L. Vu, D.T. Tran. - Application of hedge algebra-based fuzzy controller to active control of a structure against earthquake, Structural Control and Health Monitoring, 20 (4) (2013) 483-495.",{"id":18,"text":419,"url":18,"identifiers":18},"Alli, H., O. Yakut. - Fuzzy sliding-mode control of structures, Engineering Structures, 27 (2) (2005) 277-284.",{"id":18,"text":421,"url":18,"identifiers":18},"Nguyen, C.H., T.S. Tran, D.P. Pham. - Modeling of a semantics core of linguistic terms based on an extension of hedge algebra semantics and its application, Knowledge-Based Systems, 67 (2014) 244-262.",{"id":18,"text":423,"url":18,"identifiers":18},"Nguyen, C.H., W. Pedrycz, T.L. Duong, T.S. Tran. - A genetic design of linguistic terms for fuzzy rule based classifiers, International Journal of Approximate Reasoning, 54 (1) (2013) 1-21.",{"id":18,"text":425,"url":18,"identifiers":18},"Nguyen, C.H., W. Pedrycz. - A construction of sound semantic linguistic scales using 4-tuple representation of term semantics, International Journal of Approximate Reasoning, 55 (3) (2014) 763-786.",{"id":18,"text":427,"url":18,"identifiers":18},"Ho, N.C., N. Van Long. - Fuzziness measure on complete hedge algebras and quantifying semantics of terms in linear hedge algebras, Fuzzy Sets and Systems, 158 (4) (2007) 452-471.",{"id":18,"text":429,"url":18,"identifiers":18},"Ho, N.C. - A topological completion of refined hedge algebras and a model of fuzziness of linguistic terms and hedges, Fuzzy Sets and Systems, 158 (4) (2007) 436-451.",{"id":18,"text":431,"url":18,"identifiers":18},"Ho, N.C., W. Wechler. - Extended hedge algebras and their application to fuzzy logic, Fuzzy Sets and Systems, 52 (3) (1992) 259-281.",{"id":18,"text":433,"url":18,"identifiers":18},"Ho, N.C., W. Wechler. - Hedge algebras: an algebraic approach to structure of sets of linguistic truth values, Fuzzy Sets and Systems, 35 (3) (1990) 281-293.",{"id":18,"text":435,"url":18,"identifiers":18},"D. K. Tran, H.V.N., H. C. Nguyen. - Hedge algebras, linguistic-value logic and their application to fuzzy reasoning, International Journal of Uncertainty, Fuzziness and Knowledge-Based Systems, 7 (4) (1999) 347-361.",{"id":18,"text":437,"url":18,"identifiers":18},"Vukadinović, D., M. Bašić, C. H. Nguyen, N. L. Vu, T. D. Nguyen. - Hedge-algebra-based voltage controller for a self-excited induction generator, Control Engineering Practice, 30 (2014) 78-90.",{"id":18,"text":439,"url":18,"identifiers":18},"Ho, N.C., V.N. Lan. - Optimal hedge-algebras-based controller: Design and application, Fuzzy Sets and Systems, 159 (8) (2008) 968-989.",{"id":18,"text":441,"url":18,"identifiers":18},"Duc, N.D., N.L. Vu, D.T. Tran, H.L. Bui. - A study on the application of hedge algebras to active fuzzy control of a seism-excited structure, Journal of Vibration and Control, 18 (14) (2012) 2186-2200.",{"id":18,"text":443,"url":18,"identifiers":18},"Bui, H.L., C.H. Nguyen, N.L. Vu, C.H. Nguyen. - General design method of hedge-algebras-based fuzzy controllers and an application for structural active control, Applied Intelligence, 43 (2) (2015) 251-275.",{"id":18,"text":445,"url":18,"identifiers":18},"Bui, H.L., C.H. Nguyen, V.B. Bui, K.N. Le, H.Q. Tran. - Vibration control of uncertain structures with actuator saturation using hedge-algebras-based fuzzy controller, Journal of Vibration and Control, 23 (12) (2015) 1984-2002.",{"id":18,"text":447,"url":18,"identifiers":18},"Bui, H.L., D.T. Tran, N.L. Vu. - Optimal fuzzy control of an inverted pendulum, Journal of Vibration and Control, 18 (14) (2012) 2097-2110.",{"id":18,"text":449,"url":18,"identifiers":18},"Du, H., N. Zhang, F. Naghdy. - Actuator saturation control of uncertain structures with input time delay, Journal of Sound and Vibration, 330 (18) (2011) 4399-4412.",{"id":18,"text":451,"url":18,"identifiers":18},"R. Adhikari, H.Y. - Sliding mode control of buildings with ATMD, Earthquake Engineering & Structural Dynamics, 26 (1997) 409-422.",{"id":18,"text":453,"url":18,"identifiers":18},"C. Lim, Y.P., S. Moon. - Robust saturation controller for linear time-invariant system with structured real parameter uncertainties, Journal of Sound and Vibration, 294 (2006) 1-14.",{"id":455,"createTime":456,"updateTime":457,"relativeEntities":458,"slug":459,"properties":460,"entityType":77,"verifyStatus":78,"verifyTime":456,"verifyNote":79,"syncStatus":17,"languages":471,"translateLanguages":18,"viewCount":19,"primaryUrl":472,"fullTextUrl":473,"authors":474,"publicationType":149,"publisherRelationship":514,"citationCount":19,"citationInfo":541,"publishDate":543,"publishYear":544,"citationAnalyzeStatus":17,"lastCitationAnalyze":545,"indexDatabases":18,"openAccess":18,"references":546,"isForceReanalyzing":183},"a14f1f2d-4fea-4f8d-ad5f-dd0de48d375d","2025-07-12T08:09:18.809+00:00","2025-08-23T23:30:26.629+00:00",[],"Analyzing-movement-behavior-of-zebrafish-in-different-sized-confined-areas",{"keywords":461,"gsPaper":463,"abstract":465,"title":467,"doi":469},{"EN":462},"Confined areas,Monitoring, Movement behavior,Zebrafish (Danio rerio)",{"VOID":464},"[\"4785019250256131349\"]",{"EN":466},"Movement behavior of zebrafish (Danio rerio) was analysed according to different sizes of observation arena (four sizes:and ). The observation arena was separated into corner, boundary and central areas based on experimental data. The results showed that the shapes of the corner, boundary and central areas were accordingly different in different sizes of the arena. Individuals stayed in the boundary zone for a substantial proportion (approximately 55-58 %) of the observation period while in the corner zone they stayed for the shortest time period (approximately 12-14 %). Movement parameters (speed, acceleration, etc.) of each individual varied in different areas on different sizes and speed was highest in the size of while acceleration was highest in the size of . These reveal that the movement behaviors of zebrafish were affected by different sizes of arenas, at larger sizes they move more actively compared to smaller sizes. However, Transition probability matrices (TPMs) of moving between different areas in the observation were stable. These findings imply that there is a stereotypic inner state that maintains basic behaviors in animals. Information from this work would provide backgrounds of real-life process mechanism and would be useful for monitoring in response to environmental changes in practical aspect and be applicable to a wide range of fields including pharmacology, neurology, and genetics.",{"EN":468},"Analyzing movement behavior of zebrafish  in different sized confined areas",{"VOID":470},"10.15625\u002F2525-2518\u002F16476",[81],"https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fview\u002F16476","https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fdownload\u002F16476\u002F2543255272",[475,495],{"id":476,"sortIndex":87,"researcher":18,"roles":477,"affiliations":478,"properties":490},"2744441c-ea84-4064-9d10-b2eccde4b221",[],[479],{"id":480,"sortIndex":19,"affiliation":481,"properties":18},"13828bd0-01f7-4e88-94eb-76aa732b9ce7",{"id":482,"createTime":483,"updateTime":484,"relativeEntities":485,"slug":486,"properties":487,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"f1d56349-7567-4d19-860b-5dbe408b02c3","2024-07-24T04:58:23.855+00:00","2025-07-12T08:09:18.813+00:00",[],"International-Affairs-Office-International-Affairs-Office-No-783-Pham-Huu-Lau-street-Ward-6-Cao-Lanh-city-Dong-Thap-Viet-Nam",{"title":488},{"EN":489},"International Affairs Office, International Affairs Office, No.783, Pham Huu Lau street, Ward 6, Cao Lanh city, Dong Thap, Viet Nam",{"gsAuthor":491,"title":493},{"VOID":492},"un_O7MEAAAAJ",{"EN":494},"Nguyen Quoc Anh",{"id":496,"sortIndex":19,"researcher":18,"roles":497,"affiliations":498,"properties":509},"be0e4d6a-5a2e-44c1-ae11-26f9808a1e31",[],[499],{"id":500,"sortIndex":19,"affiliation":501,"properties":18},"00718ceb-078c-4ef9-b9ae-81035fcd777f",{"id":502,"createTime":503,"updateTime":503,"relativeEntities":504,"slug":505,"properties":506,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"833d77f9-84bf-4393-bfbc-2b9e6c598a7d","2026-06-17T11:04:54.565+00:00",[],"International-Affairs-Office-No-783-Pham-Huu-Lau-street-Ward-6-Cao-Lanh-city-Dong-Thap-Viet-Nam",{"title":507},{"EN":508},"International Affairs Office, No.783, Pham Huu Lau street, Ward 6, Cao Lanh city, Dong Thap, Viet Nam",{"gsAuthor":510,"title":512},{"VOID":511},"ifr7VMIAAAAJ",{"EN":513},"Quach Kha Quang",{"url":18,"publisher":515,"properties":534},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":516,"slug":10,"properties":517,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":520,"manageAffiliations":521,"indexDatabases":522,"url":38,"thumbnailPath":18,"statistic":529,"gsStatistic":18,"type":55,"analyzePriority":18},[],{"issn":518,"title":519},{"VOID":13},{"VOID":15},[],[],[523],{"id":24,"indexDatabase":524,"url":37,"indexYears":18,"academicFieldIds":18,"indexDatabaseRanking":18},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":525,"label":526,"description":527,"key":34,"publicationTags":528,"standard":18},[],{"EN":31,"VI":31},{"VI":33,"EN":33},[36],{"impactFactor":19,"impactFactorByYear":530,"i10Index":19,"i10IndexLast5Year":19,"totalPublication":41,"totalPublicationByYear":531,"totalCitation":19,"totalCitationByYear":532,"totalCitationPerPublication":19,"totalCitationPerPublicationByYear":533,"hindexLast5Year":19,"hindex":19},{},{"2012":43,"2014":44,"2015":45,"2016":45,"2017":46,"2018":47,"2019":47,"2020":48,"2021":49,"2022":50,"2023":51,"2024":52},{},{},{"volume":535,"pages":537,"issue":539},{"VOID":536},"61",{"VOID":538},"1080-1088",{"VOID":540},"6",{"total":19,"publishYear":19,"statisticByYear":542},{},"2023-12-15",2023,"2025-08-23T23:30:26.628+00:00",[547,549,551,553,555,557,559,561,563,565,567,569,571,573,575],{"id":18,"text":548,"url":18,"identifiers":18},"Brodin T., Nordling J., Lagesson A., Klaminder J., Hellström G., Christensen B., and Fick J. - Environmental relevant levels of a benzodiazepine (oxazepam) alters",{"id":18,"text":550,"url":18,"identifiers":18},"important behavioral traits in a common planktivorous fish, (Rutilus rutilus), Journal of Toxicology and Environmental Health, Part A, 80 (16-18) (2017) 963-970. https:\u002F\u002Fdoi.org\u002F10.1080\u002F15287394.2017.1352214",{"id":18,"text":552,"url":18,"identifiers":18},"Saaristo M., Brodin T., Balshine S., Bertram M. G., Brooks B. W., Ehlman S. M., McCallum E. S., Sih A., Sundin J., Wong B. B., and Arnold K. E. - Direct and indirect effects of chemical contaminants on the behaviour, ecology and evolution of wildlife, Proceedings of the Royal Society B 285 (1885) (2018) 20181297. https:\u002F\u002Fdoi.org\u002F10.1098\u002Frspb.2018.1297",{"id":18,"text":554,"url":18,"identifiers":18},"Araujo-Silva H., Pinheiro-da-Silva J., Silva P. F., and Luchiari A. C. - Individual differences in response to alcohol exposure in zebrafish (Danio rerio), PLoS One 13 (6) (2018) e0198856. https:\u002F\u002Fdoi.org\u002F10.1371\u002Fjournal.pone.0198856.",{"id":18,"text":556,"url":18,"identifiers":18},"Severo E. S., Marins A. T., Cerezer C., Costa D., Nunes M., Prestes Zanella R., and Loro V. L. - Ecological risk of pesticide contamination in a Brazilian river located near a rural area: a study of biomarkers using zebrafish embryos, Ecotoxicology and environmental safety 190 (2020) 110071. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ecoenv.2019.110071",{"id":18,"text":558,"url":18,"identifiers":18},"Eilam D. - Open-field behavior withstands drastic changes in area size, Behavioural Brain Research, 142 (1-2) (2003) 53-62. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0166-4328(02)00382-0.",{"id":18,"text":560,"url":18,"identifiers":18},"Stewart A. M., Gaikwad S., Kyzar E., and Kalueff A. V. - Understanding spatio-temporal strategies of adult zebrafish exploration in the open field test, Brain research 1451 (2012) 44-52. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.brainres.2012.02.064",{"id":18,"text":562,"url":18,"identifiers":18},"Yaski O., Portugali J., and Eilam D. - Arena geometry and path shape: When rats travel in",{"id":18,"text":564,"url":18,"identifiers":18},"straight or in circuitous paths?, Behavioural brain research 225 (2) (2011) 449-454. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.bbr.2011.07.055",{"id":18,"text":566,"url":18,"identifiers":18},"Jeanson R., Blanco S., Fournier R., Deneubourg J. L., Fourcassié V., and Theraulaz G. - A model of animal movements in a bounded space, Journal of Theoretical Biology 225 (2003a) 443-451. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0022-5193(03)00277-7.",{"id":18,"text":568,"url":18,"identifiers":18},"Braun C. D., Gaube P., Afonso P., Fontes J., Skomal G. B., and Thorrold S. R. - Assimilating electronic tagging, oceanographic modelling, and fisheries data to estimate movements and connectivity of swordfish in the North Atlantic, ICES Journal of Marine Science, 76 (7) (2019), 2305-2317. https:\u002F\u002Fdoi.org\u002F10.1093\u002Ficesjms\u002Ffsz106",{"id":18,"text":570,"url":18,"identifiers":18},"Liu Y., Chon T. S., and Lee S. H. - Analysis of behavioral changes of zebrafish (Danio rerio) in response to formaldehyde using Self-organizing map and a hidden Markov model, Ecological Modelling, 222 (14) (2011) 2191-2201.",{"id":18,"text":572,"url":18,"identifiers":18},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ecolmodel.2011.02.010.",{"id":18,"text":574,"url":18,"identifiers":18},"Quach Q. K., Chon T. S., Kim H., and Nguyen T. V. - One and two-individual movements of fish after chemical exposure, Journal of the Korean Physical Society, 63 (1) (2013) 18-27. https:\u002F\u002Fdoi.org\u002F10.3938\u002Fjkps.63.18.",{"id":18,"text":576,"url":18,"identifiers":18},"Katz Y., Tunstrøm K., Ioannou C. C., Huepe C. and Couzin I. D. - Inferring the structure and dynamics of interactions in schooling fish, Proceedings of the National Academy of Sciences, 108 (46) (2011) 18720-18725. https:\u002F\u002Fdoi.org\u002F10.1073\u002Fpnas.1107583108.",{"id":578,"createTime":579,"updateTime":580,"relativeEntities":581,"slug":582,"properties":583,"entityType":77,"verifyStatus":17,"verifyTime":580,"verifyNote":591,"syncStatus":17,"languages":592,"translateLanguages":18,"viewCount":19,"primaryUrl":594,"fullTextUrl":595,"authors":596,"publicationType":149,"publisherRelationship":639,"citationCount":18,"citationInfo":18,"publishDate":665,"publishYear":666,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":667,"isForceReanalyzing":183},"f8df779c-34f6-4ada-ae9f-a97647ac52a4","2024-04-19T12:13:02.697+00:00","2025-02-15T23:30:26.352+00:00",[],"NGHI%C3%8AN-C%E1%BB%A8U-T%C3%8DNH-CH%E1%BA%A4T-%C4%90I%E1%BB%86N-T%E1%BB%AA-C%E1%BB%A6A-H%E1%BB%86-V%E1%BA%ACT-LI%E1%BB%86U-T%E1%BB%94-H%E1%BB%A2P-1-x-La0-7Ca0-3MnO3-xLa1-5Sr0-5NiO4",{"keywords":584,"abstract":585,"title":587,"doi":589},{},{"VI":586},"Hệ vật  liệu  tổ hợp (1-x)La0,7Ca0,3MnO3 + xLa1,5Sr0,5NiO4  (0  x  0,4) được chế  tạo bằng phương pháp nghiền phản ứng kết hợp với ủ nhiệt. Khi tăng nồng độ pha điện môi La1,5Sr0,5NiO4 trong mẫu, nhiệt độ chuyển pha sắt từ - thuận từ hầu như không đổi (TC ~ 252 K) trong khi đó nhiệt độ chuyển pha kim loại - điện môi giảm từ 251 K với x = 0,0 xuống 65 K với x = 0,2. Khi  x ≥ 0,25, tính chất dẫn điện của vật liệu hoàn toàn thể hiện tính điện môi trong vùng nhiệt độ từ 30 K đến 300 K. Sự có mặt của pha điện môi La1,5Sr0,5NiO4 đã  làm giảm mạnh giá  trị  từ  trở trong vùng lân cận TC nhưng làm tăng đáng kể giá trị từ trở của hệ vật liệu (x  0,25) trong vùng nhiệt độ dưới TC.",{"VI":588},"NGHIÊN CỨU TÍNH CHẤT ĐIỆN-TỪ CỦA HỆ VẬT LIỆU TỔ HỢP  (1-x)La0,7Ca0,3MnO3 + xLa1,5Sr0,5NiO4",{"VOID":590},"10.15625\u002F0866-708X\u002F50\u002F4\u002F9526","Author affiliation is blank",[593],"VI","https:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fjst\u002Farticle\u002Fview\u002F9526","https:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fjst\u002Farticle\u002Fdownload\u002F9526\u002F7800",[597,604,611,618,625,632],{"id":598,"sortIndex":44,"researcher":18,"roles":599,"affiliations":600,"properties":601},"f2ff4eb6-67c8-4aa1-af8f-182a29be7a91",[],[],{"title":602},{"EN":603},"Vũ Đình Lãm",{"id":605,"sortIndex":48,"researcher":18,"roles":606,"affiliations":607,"properties":608},"b6820562-8abf-414e-add3-156e296e379e",[],[],{"title":609},{"EN":610},"Đỗ Hùng Mạnh",{"id":612,"sortIndex":87,"researcher":18,"roles":613,"affiliations":614,"properties":615},"05ac8650-0b41-4bbf-99d7-19a04a745196",[],[],{"title":616},{"EN":617},"Nguyễn Thị Hà",{"id":619,"sortIndex":45,"researcher":18,"roles":620,"affiliations":621,"properties":622},"9bd90856-60cb-4492-95ae-cd7785e7fa1a",[],[],{"title":623},{"EN":624},"Lê Văn Hồng",{"id":626,"sortIndex":137,"researcher":18,"roles":627,"affiliations":628,"properties":629},"e458e0bf-c305-4cfd-9b5e-350ad4a9b7f2",[],[],{"title":630},{"EN":631},"Phạm Thanh Phong",{"id":633,"sortIndex":19,"researcher":18,"roles":634,"affiliations":635,"properties":636},"3b928b50-15cb-47cf-8f91-92b2f8550eb8",[],[],{"title":637},{"EN":638},"Trần Đăng Thành",{"url":18,"publisher":640,"properties":659},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":641,"slug":10,"properties":642,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":645,"manageAffiliations":646,"indexDatabases":647,"url":38,"thumbnailPath":18,"statistic":654,"gsStatistic":18,"type":55,"analyzePriority":18},[],{"issn":643,"title":644},{"VOID":13},{"VOID":15},[],[],[648],{"id":24,"indexDatabase":649,"url":37,"indexYears":18,"academicFieldIds":18,"indexDatabaseRanking":18},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":650,"label":651,"description":652,"key":34,"publicationTags":653,"standard":18},[],{"EN":31,"VI":31},{"VI":33,"EN":33},[36],{"impactFactor":19,"impactFactorByYear":655,"i10Index":19,"i10IndexLast5Year":19,"totalPublication":41,"totalPublicationByYear":656,"totalCitation":19,"totalCitationByYear":657,"totalCitationPerPublication":19,"totalCitationPerPublicationByYear":658,"hindexLast5Year":19,"hindex":19},{},{"2012":43,"2014":44,"2015":45,"2016":45,"2017":46,"2018":47,"2019":47,"2020":48,"2021":49,"2022":50,"2023":51,"2024":52},{},{},{"volume":660,"pages":662,"issue":664},{"VOID":661},"50",{"VOID":663},"529",{"VOID":176},"2017-04-10",2017,[],{"id":669,"createTime":670,"updateTime":671,"relativeEntities":672,"slug":673,"properties":674,"entityType":77,"verifyStatus":78,"verifyTime":685,"verifyNote":79,"syncStatus":17,"languages":686,"translateLanguages":18,"viewCount":19,"primaryUrl":687,"fullTextUrl":688,"authors":689,"publicationType":149,"publisherRelationship":746,"citationCount":19,"citationInfo":773,"publishDate":775,"publishYear":776,"citationAnalyzeStatus":777,"lastCitationAnalyze":778,"indexDatabases":18,"openAccess":18,"references":779,"isForceReanalyzing":183},"cae92969-aadd-4719-8434-b7d116e038c6","2025-07-12T00:07:37.147+00:00","2026-05-14T23:28:02.451+00:00",[],"Genetic-diversity-in-the-natural-populations-of-Pinus-dalatensis-Ferr%C3%A9-Pinaceae-assessed-by-SSR-markers",{"keywords":675,"gsPaper":677,"abstract":679,"title":681,"doi":683},{"EN":676},"Genetic diversity,near threatened,Pinus dalatensis,species conservation,SSR markers.",{"VOID":678},"[\"13189063610764005865\"]",{"EN":680},"Pinus dalatensis Ferre’(Family: Pinaceae) is an endemic plant with restricted habitats at higher altitudes in Vietnam highland. The species are now near threatened by over-exploitation and habitat destruction. The genetic variation within and among populations of P. dalatensis was investigated by 41 microsatellite (single sequence repeat, SSR) primers, but only 11 SSR primers showed polymorphism bands. In all, 70 sampled trees from six populations in Vietnam highland were analyzed in this study, samples were collected from populations located in different altitude. A total of 40 allelic variants have been detected. The mean number of alleles per locus was 2.197. The SSR data showed a genetic diversity parameters within populations with an average of I = 0.524, Ho = 0.222, He = 0.317, Fis =0.333 and Ap = 0.106. The number private alleles (Ap) was only found in four populations, the Hoa Son population showed the highest (0.273), followed by Da Chay (0.182), and value of 0.091 for all Ngoc Linh and A Yun. Analysis of molecular variance analysis showed that most genetic variation was within populations of 57.504 % and among population of 42.496 %. The population pairwise differentiations indicated that most of the populations were significantly differentiated p &lt; 0.001 with Fst values ranged from 0.195 to 0.418. This study highlights the importance of conserving the genetic resources of P. dalatensis species",{"EN":682},"Genetic diversity in the natural populations of Pinus dalatensis Ferré (Pinaceae) assessed by SSR 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shell vibration,Continuous element method",{"EN":790},"This research studies the free vibration of composite ring-stiffened cylindrical shells by the continuous element method (CEM). The dynamic stiffness matrix (DSM) of the investigated structure has been constructed based on the analytical solutions of the governing equations of motion for composite cylindrical shells and annular plates. By applying the powerful assembly procedure of continuous elements method, natural frequencies and harmonic responses of composite ring-stiffened cylindrical shells have been obtained. In addition, the proposed model allows extracting exactly ring-stiffener vibration modes by choosing appropriate points of response. Numerical examples have confirmed many advantages of the developed model.",{"EN":792},"Continuous element formulations for composite ring-stiffened cylindrical 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In recent decades, these changes occur more frequently with changes in the shape of shoreline, the change in area of coastal mangroves as well as loss of productive land. In the trend of sea level rise, a study on changes of estuaries is necessary, in order to preserve and develop the mangroves, disposition, production planning infrastructure and civil works, ...By using multi – temporal remote sensing from 1989 to 2015 and techniques appropriate digital image processing. The changes of erosion – deposition in shoreline are determined and contributed to clarify of erosion – deposition rules of the Mekong Delta. The results show that the shoreline of Tra Vinh province has changed over the years. This change is concentrated in some points such as: erosion occurs strongly in Hiep Thanh Commune, Long Thanh and Dan Thanh Communes with erosion rate can reach to 13 - 15 m per year. In addition, the deposition occurs mainly in communes such as My Long Nam commune, the first half of Truong Long Hoa and the area of Dong Hai and Long Vinh communes. The shoreline forecast for 2015 and 2017 is made for the entire shoreline of Tra Vinh province. The forecasted results show the trend of coastal deposition and erosion in the coming years, especially in the shoreline areas with strong changes as mentioned above. The phenomenon of erosion is predicted in the communes of Hiep Thanh, Long Hoa and Dan Thanh in the following years.",{"EN":921},"Assessing the shoreline changes in Tra Vinh provinceusing multi-temporal remote sensing 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protocol",{"VOID":1039},"[\"12871328052949121699\"]",{"EN":1041},"This paper presents the calculation of the change cycle Carbon dioxide (CO2) in the global biosphere with the aid of spatial mathematical models. The absorption of CO2 emissions from burning fossil fuels, deforestation, and soil erosion by terrestrial ecosystems have been calculated for all countries in the world, especially the countries of Indochina. The paper also provides several experiments to evaluate simulation results based on different scenarios of implementing the Kyoto Protocol. Thereby showing the Indochinese countries have a significant role in the absorption of CO2 into the atmosphere, affecting ugly the Kyoto Protocol. The deforestation and soil erosion are the main causes.",{"EN":1043},"Calculation of the role of indochina countries in global warming and its consequences in the world",{"VOID":1045},"10.15625\u002F0866-708X\u002F51\u002F1\u002F9556","2025-07-12T00:10:00.392+00:00",[81],"https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fview\u002F9556","https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fdownload\u002F9556\u002F7852",[1051,1069],{"id":1052,"sortIndex":19,"researcher":18,"roles":1053,"affiliations":1054,"properties":1066},"f68aa378-363b-4907-a86b-fc039b0adb30",[],[1055],{"id":1056,"sortIndex":19,"affiliation":1057,"properties":18},"2c19c36c-d420-42a6-9eff-8720a244bdb5",{"id":1058,"createTime":1059,"updateTime":1060,"relativeEntities":1061,"slug":1062,"properties":1063,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"0d131de8-31e5-4653-ac07-5a44ec1de9a7","2023-06-13T14:35:53.977+00:00","2026-06-19T01:26:37.104+00:00",[],"Dorodnitsyn-Computing-Center-RAS-Russia",{"title":1064},{"VI":1065},"Dorodnitsyn Computing Center, RAS, Russia",{"title":1067},{"EN":1068},"Alexander Tarko",{"id":1070,"sortIndex":87,"researcher":18,"roles":1071,"affiliations":1072,"properties":1084},"1947eabf-6ffd-41e4-9a12-9562aa05771e",[],[1073],{"id":1074,"sortIndex":19,"affiliation":1075,"properties":18},"336e1470-2cc3-4568-9aec-e2f572a13ebf",{"id":1076,"createTime":1077,"updateTime":1078,"relativeEntities":1079,"slug":1080,"properties":1081,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"244ccb42-04cb-4a29-94c6-493106fd2c6b","2023-06-13T14:35:54.252+00:00","2026-06-19T01:26:37.111+00:00",[],"Institute-of-Applied-Mechanics-and-Informatics-VAST-1-Mac-Dinh-Chi-HCMC-Viet-Nam",{"title":1082},{"VI":1083},"Institute of Applied Mechanics and Informatics, VAST, 1 Mac Dinh Chi, HCMC, Viet Nam",{"gsAuthor":1085,"title":1087},{"VOID":1086},"VDzborgAAAAJ",{"EN":1088},"Tran Van Lang",{"url":18,"publisher":1090,"properties":1109},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1091,"slug":10,"properties":1092,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1095,"manageAffiliations":1096,"indexDatabases":1097,"url":38,"thumbnailPath":18,"statistic":1104,"gsStatistic":18,"type":55,"analyzePriority":18},[],{"issn":1093,"title":1094},{"VOID":13},{"VOID":15},[],[],[1098],{"id":24,"indexDatabase":1099,"url":37,"indexYears":18,"academicFieldIds":18,"indexDatabaseRanking":18},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":1100,"label":1101,"description":1102,"key":34,"publicationTags":1103,"standard":18},[],{"EN":31,"VI":31},{"VI":33,"EN":33},[36],{"impactFactor":19,"impactFactorByYear":1105,"i10Index":19,"i10IndexLast5Year":19,"totalPublication":41,"totalPublicationByYear":1106,"totalCitation":19,"totalCitationByYear":1107,"totalCitationPerPublication":19,"totalCitationPerPublicationByYear":1108,"hindexLast5Year":19,"hindex":19},{},{"2012":43,"2014":44,"2015":45,"2016":45,"2017":46,"2018":47,"2019":47,"2020":48,"2021":49,"2022":50,"2023":51,"2024":52},{},{},{"volume":1110,"pages":1112,"issue":1114},{"VOID":1111},"51",{"VOID":1113},"1-10",{"VOID":1115},"1",{"total":48,"publishYear":1117,"statisticByYear":1118},2013,{},[],{"id":1121,"createTime":1122,"updateTime":1123,"relativeEntities":1124,"slug":1125,"properties":1126,"entityType":77,"verifyStatus":78,"verifyTime":1122,"verifyNote":79,"syncStatus":17,"languages":1137,"translateLanguages":18,"viewCount":19,"primaryUrl":1138,"fullTextUrl":1139,"authors":1140,"publicationType":149,"publisherRelationship":1175,"citationCount":19,"citationInfo":1201,"publishDate":1204,"publishYear":544,"citationAnalyzeStatus":777,"lastCitationAnalyze":1205,"indexDatabases":18,"openAccess":18,"references":1206,"isForceReanalyzing":183},"62bcbe97-0071-48d6-b992-c29822ea4f63","2025-07-12T08:13:59.162+00:00","2026-05-13T22:32:51.976+00:00",[],"Optimally-stable-matchings-for-resource-allocations",{"keywords":1127,"gsPaper":1129,"abstract":1131,"title":1133,"doi":1135},{"EN":1128},"stable marriage,integer linear programming (ILP),resource allocation,network computting",{"VOID":1130},"[\"13942718075382271328\"]",{"EN":1132},"The stable marriage problem (SMP) and its variants have received much attention in the literature due to their wide range of applications. One of their applications is resource allocation in network environments. In this paper, we consider two resource allocation problems. The first one is to maximize the performance of a system in the fog computing environment while maintaining a low cost. In the problem, the resource allocation task will be rewritten as the MAX-SMTI variant (i.e., finding the maximum cardinality stable matching of the stable marriage with ties and incomplete lists). It is then formulated under an integer linear program to solve. The best allocation can then be chosen to be the lowest cost one among stable matchings. In the same manner, another variant called MAX-HRT (i.e., finding the maximum cardinality stable matching of the hospital-residents with ties) is applied for the second application regarding the virtual machine allocation. By using MAX-SMTI and MAX-HRT models which are solved via integer linear programs, we aim to not only find stable matchings for the resource allocation problems but also maximum length matchings. Consequently, a maximum number of user requests should be served at a time. The models are implemented in C++ using the SCIP solver. Numerical experiments are conducted for large datasets and results are given to show the efficiency of the models.",{"EN":1134},"Optimally stable matchings for resource allocations",{"VOID":1136},"10.15625\u002F2525-2518\u002F16107",[81],"https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fview\u002F16107","https:\u002F\u002Fvjs.ac.vn\u002Fjst\u002Farticle\u002Fdownload\u002F16107\u002F385057",[1141,1158],{"id":1142,"sortIndex":87,"researcher":18,"roles":1143,"affiliations":1144,"properties":1155},"18985d57-3847-4239-bf7f-155dff00e178",[],[1145],{"id":1146,"sortIndex":19,"affiliation":1147,"properties":18},"440c5ea6-fed4-41d1-8d1f-aea68d7d600a",{"id":1148,"createTime":1149,"updateTime":1149,"relativeEntities":1150,"slug":1151,"properties":1152,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"0f57ae76-30fc-4853-8f34-0fd2c752a97f","2025-07-12T08:13:59.166+00:00",[],"School-of-Engineeringand-Technology-Vinh-University-182-Le-Duan-Vinh-City-Viet-Nam",{"title":1153},{"EN":1154},"School of Engineeringand Technology, Vinh University, 182 Le Duan, Vinh City, Viet Nam",{"title":1156},{"EN":1157},"Hoang Huu Viet",{"id":1159,"sortIndex":19,"researcher":18,"roles":1160,"affiliations":1161,"properties":1172},"543fb2ba-53bc-409a-a836-f0a349126c7b",[],[1162],{"id":1163,"sortIndex":19,"affiliation":1164,"properties":18},"6de343e5-ea34-447c-8bbd-d06d03de0c85",{"id":1165,"createTime":1166,"updateTime":1166,"relativeEntities":1167,"slug":1168,"properties":1169,"entityType":101,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"5d2e8c82-6aad-4b45-8577-ec1845edb4b1","2025-07-12T08:13:59.164+00:00",[],"Faculty-of-Computer-Science-and-Engineering-Ho-Chi-Minh-City-University-of-Technology-HCMUT-268-Ly-Thuong-Kiet-District-10-Ho-Chi-Minh-City-Viet-Nam",{"title":1170},{"EN":1171},"Faculty of Computer Science and Engineering, Ho Chi Minh City University of Technology(HCMUT), 268 Ly Thuong Kiet, District 10, Ho Chi Minh City, Viet Nam",{"title":1173},{"EN":1174},"Le Hong Trang",{"url":18,"publisher":1176,"properties":1195},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1177,"slug":10,"properties":1178,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1181,"manageAffiliations":1182,"indexDatabases":1183,"url":38,"thumbnailPath":18,"statistic":1190,"gsStatistic":18,"type":55,"analyzePriority":18},[],{"issn":1179,"title":1180},{"VOID":13},{"VOID":15},[],[],[1184],{"id":24,"indexDatabase":1185,"url":37,"indexYears":18,"academicFieldIds":18,"indexDatabaseRanking":18},{"id":26,"createTime":27,"updateTime":28,"relativeEntities":1186,"label":1187,"description":1188,"key":34,"publicationTags":1189,"standard":18},[],{"EN":31,"VI":31},{"VI":33,"EN":33},[36],{"impactFactor":19,"impactFactorByYear":1191,"i10Index":19,"i10IndexLast5Year":19,"totalPublication":41,"totalPublicationByYear":1192,"totalCitation":19,"totalCitationByYear":1193,"totalCitationPerPublication":19,"totalCitationPerPublicationByYear":1194,"hindexLast5Year":19,"hindex":19},{},{"2012":43,"2014":44,"2015":45,"2016":45,"2017":46,"2018":47,"2019":47,"2020":48,"2021":49,"2022":50,"2023":51,"2024":52},{},{},{"volume":1196,"pages":1198,"issue":1200},{"VOID":1197},"60",{"VOID":1199},"257-269",{"VOID":772},{"total":19,"publishYear":1202,"statisticByYear":1203},2022,{},"2023-02-17","2026-05-13T22:32:51.975+00:00",[1207,1209,1211,1213,1215,1217,1219,1221,1223,1225,1227,1229,1231,1233,1235,1237,1239,1241,1243,1245,1247,1249,1251,1253,1255,1257],{"id":18,"text":1208,"url":18,"identifiers":18},"Abraham D. J., Irving R. W. and Manlove D. F. - The student-project allocation problem, in Proceedings of the 14th International Symposium, Kyoto, Japan, Dec. 2003, pp. 474–484.",{"id":18,"text":1210,"url":18,"identifiers":18},"Battula S. K., Garg S., Naha R. K., Thulasiraman P. and Thulasiram R. - A micro-level compensation-based cost model for resource allocation in a fog environment, Sensors 19 (13) (2019) 2954.",{"id":18,"text":1212,"url":18,"identifiers":18},"Chu Q., Cui L. and Zhang Y. - Joint Computing and Storage Resource Allocation Based on Stable Matching in Data Centers, IEEE 3rd international conference on big data security on cloud, 2017, pp. 207-212.",{"id":18,"text":1214,"url":18,"identifiers":18},"Delorme M., García S., Gondzio J., Kalcsics J., Manlove D. F., and Pettersson W. - Mathematical models for stable matching problems with ties and incomplete lists, European Journal of Operational Research 277 (2) (2019) 426-441.",{"id":18,"text":1216,"url":18,"identifiers":18},"Fleiner T., Irving R. W., and Manlove D. F. - Efficient algorithms for generalized stable marriage and roommates problems, Theoretical Computer Science 381 (1-3) (2007) 162-176.",{"id":18,"text":1218,"url":18,"identifiers":18},"Gale D. and Shapley L. S. - College admissions and the stability of marriage, The American Mathematical Monthly 9 (1) (1962) 9-15.",{"id":18,"text":1220,"url":18,"identifiers":18},"Gelain M., Pini M. S., Rossi F., Venable K. B. and Walsh T. - Local search approaches in stable matching problems, Algorithms 6 (1) (2013) 591-617.",{"id":18,"text":1222,"url":18,"identifiers":18},"Gent I. P. and Prosser P. - An empirical study of the stable marriage problem with ties and incomplete lists, Proceedings of the 15th European Conference on Artificial Intelligence, Lyon, France, Jul. 2002, pp. 141-145.",{"id":18,"text":1224,"url":18,"identifiers":18},"Gusfield D. and Irving R. W. - The stable marriage problem: structure and algorithms, MIT Press Cambridge, 1989.",{"id":18,"text":1226,"url":18,"identifiers":18},"Irving R. W. - An efficient algorithm for the “stable roommates” problem, Journal of Algorithms 6 (1)(1985) 577-595.",{"id":18,"text":1228,"url":18,"identifiers":18},"Kim G. and Lee W. - Stable matching with ties for cloud-assisted smart tv services,Proceedings of the 2014 IEEE International Conference on Consumer Electronics (ICCE), 2014, pp. 558–559.",{"id":18,"text":1230,"url":18,"identifiers":18},"Kiraly Z. - Linear time local approximation algorithm for maximum stable marriage, Algorithms, 6 (3) (2013) 4.",{"id":18,"text":1232,"url":18,"identifiers":18},"Kishk S., Almofari N. H., and Zaki F.W. - Distributed resource allocation in D2D communication networks with energy harvesting relays using stable matching, Ad Hoc Networks 61 (2017) 114-123.",{"id":18,"text":1234,"url":18,"identifiers":18},"Kwanashie A. andManlove D. F. - An integer programming approach to the hospitals\u002Fresidents problem with ties, Operations Research Proceedings, 2014, pp. 263-269.",{"id":18,"text":1236,"url":18,"identifiers":18},"Manlove D. F., Irving R. W., Iwama M., Miyazaki S., and Morita Y. - Hard variants of stable marriage, Theoretical Computer Science, 276 (1-2) (2002) 261-279.",{"id":18,"text":1238,"url":18,"identifiers":18},"McDermid E. J. - A 3\u002F2-approximation algorithm for general stable marriage,Proceedings of International Colloquium on Automata, Languages and Programming (ICALP), 2009, pp. 689-700.",{"id":18,"text":1240,"url":18,"identifiers":18},"Munera D., Diaz D., Abreu S., Rossi F., Saraswat V. and Codognet P. - Solving hard stable matching problems via local search and cooperative parallelization, Proceedings of the Twenty-Ninth AAAI Conference on Artificial Intelligence, Austin, Texas, Jan. 2015, pp. 1212-1218.",{"id":18,"text":1242,"url":18,"identifiers":18},"Naha R. K., Garg S. and Chan A. - Big Data-Enabled Internet of Things, Institution of Engineering and Technology (IET) Digital Library, Fog-computing architecture: survey and challenges, 2019, pp. 199-224.",{"id":18,"text":1244,"url":18,"identifiers":18},"Roth A. E. - The evolution of the labor market for medical interns and residents: A case study in game theory, Journal of Political Economy 92 (6) (1984) 991-1016.",{"id":18,"text":1246,"url":18,"identifiers":18},"Vate J. H. V. - Linear programming brings marital bliss, Operations Research Letters 8 (3) (1989) 147-153.",{"id":18,"text":1248,"url":18,"identifiers":18},"Viet H. H., Uyen N. T., Lee S. G.,Chung T. C., and Trang L. H. - Amax conflictsbasedheuristic search for the stable marriage problem with ties and incomplete lists, Journal of Heuristics 27 (2021) 439-458.",{"id":18,"text":1250,"url":18,"identifiers":18},"Wang J. V., Fok K., Cheng C., and Tse C. K. - A stable matching-based virtualmachine allocation mechanism for cloud data centers,IEEE World Congress onServices, 2016, pp. 103-106.",{"id":18,"text":1252,"url":18,"identifiers":18},"Long D. T. - An enhanced genetic algorithm-based courses timetabling method for maximal enrollments using maximum matching on bipartite graphs, Vietnam Journal of Science and Technology 57 (6) (2019) 734-748.",{"id":18,"text":1254,"url":18,"identifiers":18},"Xu H. and Li B. - Egalitarian stable matching for VM migration in cloud computing, Proceedings of the IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS), 2011, pp. 631-636.",{"id":18,"text":1256,"url":18,"identifiers":18},"Zhou Z., Gao C., Xu C., Chen T., Zhang D. and Mumtaz S. - Energy-Efficient Stable Matching for Resource Allocation in Energy Harvesting-Based Device-to-Device Communications, IEEE Access 5 (2017) 15184-15196.",{"id":18,"text":1258,"url":18,"identifiers":18},"Toan P. T. and Loc N. T. - A branch and bound algorithm for workflow scheduling, Vietnam Journal of Science and Technology 56 (2) (2018) 246-256."]