[{"data":1,"prerenderedAt":322},["ShallowReactive",2],{"person-0cc461c9-9568-4fc8-ae03-cf6968d35f2c":3},{"success":4,"person":5,"request":318},true,{"lastName":6,"role":7,"name":8,"description":9,"_id":10,"designation":11,"id":12,"email":13,"url":11,"createDate":14,"filiation":11,"slugs":15,"articles":18},"Poussep","author","Stanislav","Graduando em Desenho Industrial/Projeto Produto; FAAC/UNESP","0cc461c9-9568-4fc8-ae03-cf6968d35f2c","",null,"creaktive@gmail.com","2025-04-07T13:21:40+00:00",[16,17],"stanislav_poussep","poussep_stanislav",[19,111,229],{"pageRange":12,"parent":20,"updateDate":21,"data":22,"trackId":31,"type":32,"typeData":33,"metaData":70,"langs":72,"_id":75,"contributors":76,"contributorsIds":106,"createDate":84,"status":107,"download":108,"slugs":109,"slug":110},"f43247ba-af93-4a8a-898e-651ef65d9bd2","2025-12-28T11:44:19-03:00",{"secondary":23,"primary":27},{"keywords":24,"excerpt":25,"title":26},"\u003Cp>Ergonomic Design, Comfort Perception, Seats\u003C/p>","\u003Cp>Ergonomic design of the furniture evaluates different seat models through the use of specific techniques, mostly involving subjective approaches. The present study considered a comfort perception by the means of a visual evaluation of the different seat models. Sixty adult subjects answered to proposed digital protocol, which contained seat images and a category selection input. The obtained results showed significant statistical differences (p\u003C0,05) between comfort perception of most seats analyzed, and pointed out design, material selection and presence of accessories as the factors that influenced the comfort perception by users.\u003C/p>","\u003Cp>Comfort Perception Through the Visual Evaluation of Seats: Parameters for Design\u003C/p>",{"keywords":28,"excerpt":29,"title":30},"\u003Cp>Design Ergonômico, Percepção de Conforto, Assentos\u003C/p>","\u003Cp>O design ergonômico de mobiliário utiliza técnicas específicas para avaliar o conforto de assentos, principalmente caracterizados por abordagens subjetivas. Este estudo objetivou analisar a percepção de conforto por meio da avaliação visual de assentos. Participaram 60 indivíduos adultos, sendo aplicado protocolo digital com imagens e escala de categoria. Os resultados apontaram diferenças significativas (p\u003C0,05) entre a percepção de conforto da maioria dos assentos analisados, notando-se que o desenho, o uso de materiais e complementos podem influenciar na percepção de conforto dos usuários.\u003C/p>","\u003Cp>Percepção de Conforto por Meio da Avaliação Visual de Assentos: Parâmetros para o Design Ergonômico de Mobiliário\u003C/p>","tu0kxfwj","article",{"startPage":34,"file":35,"references":38,"endPage":69,"track":31,"doi":11},"425",{"fullpath":36,"name":37},"https://storage.googleapis.com/memoria-ped.appspot.com/articles%2F10_congresso_brasileiro_de_pesquisa_e_desenvolvimento_em_design%2Ftu0kxfwj-1766933058-425-433.pdf","tu0kxfwj-1766933058-425-433.pdf",[39,42,45,48,51,54,57,60,63,66],{"id":40,"label":41},"90644296-9239-455c-b38d-a6e10e882142","BAYEUX, G. \u003Cstrong>O Móvel da Casa Brasileira\u003C/strong>. São Paulo, Museu da Casa Brasileira, 1998, 163 p.",{"label":43,"id":44},"BORG, G. \u003Cstrong>“Borgs” Perceived exertion and pain scales\u003C/strong>. Champaing: Human Kinetics, 1998. 101p.","7a514336-c37b-4abb-95f5-447822a8b229",{"id":46,"label":47},"143da2c3-4a54-4052-bbe4-22555850b13a","HOCHBERG, J.E. \u003Cstrong>Percepção\u003C/strong>. Rio de Janeiro, Zahar editores, 1976.",{"label":49,"id":50},"IIDA, I. \u003Cstrong>Ergonomia\u003C/strong>: Projeto e Produção (2ª Ed.). São Paulo, Edgard Blücher, 2005.","a3ff261d-1c34-46aa-b972-632846e7f2fc",{"label":52,"id":53},"LINDEN, J.C.S.; KUNZLER, L.S.Q.K. A seleção dos materiais e o conforto percebido em produtos: investigação da percepção relativa a três materiais utilizados em cadeiras-altas de trabalho. In: \u003Cstrong>Anais ABERGO\u003C/strong> [CD-ROM], 2001- Associação Brasileira de Ergonomia, 2001, Gramado.","42c15a48-b9a5-490b-b7c6-b8a36ae57e8f",{"id":55,"label":56},"c2997f98-46c3-4741-ba11-f894f57d2e31","MEYER, P. \u003Cstrong>O olho e o cérebro\u003C/strong> – biofilosofia da percepção visual. São Paulo: Ed. Unesp, 2002.",{"label":58,"id":59},"SANTOS, N. A.; SIMAS, M. L. B. Função de sensibilidade ao contraste: Indicadores da percepção visual da forma e da resolução espacial. \u003Cstrong>Psicologia\u003C/strong>: Reflexão e Crítica, v. 14(3), p.589-597, 2001.","e03ce7b0-fef3-4387-807e-9c8cec8dc547",{"label":61,"id":62},"SILVA, M.S. \u003Cstrong>Avaliação de preferência de cadeiras para diferentes tipos de cadeiras de escritório\u003C/strong> [Dissertação de Mestrado]. Porto Alegre, Universidade Federal do Rio Grande do Sul, 2003.","5c806a2a-6c5f-422c-91fc-fb62ed119224",{"label":64,"id":65},"SELLTIZ, C.; WRIGHTSMAN, L. S. & COOK, S. W. \u003Cstrong>Métodos de pesquisa nas relações sociais\u003C/strong> – medidas na pesquisa social. São Paulo: EPU, 1990.","ffcf34ff-8e69-4ae2-b186-68ece54ccafc",{"label":67,"id":68},"WERNER,L.; LINDEN, J.C.S.; RIBEIRO, J.L.D. Análise da percepção sobre assentos de trabalho utilizando técnicas estatísticas multivariadas. \u003Cstrong>Revista Produção\u003C/strong>, v.13, n.13, p. 34-49, 2003.","dd4d7da9-a760-4627-bbd9-914f1d0a8986","433",{"updateDate":11,"createDate":71,"deleteDate":11},1766933058,[73,74],"primary","secondary","43c80a1d-ab14-4dbb-81af-3cade5e19ca4",[77,90,100],{"lastName":78,"name":79,"id":11,"path":80,"filiation":81,"objectID":82,"lastmodified":83,"createDate":84,"_id":82,"designation":11,"email":85,"url":11,"slugs":86,"role":11,"description":89},"Lanutti","Jamille Norteza de Lima","people/7b135585-50c8-4ebf-a696-6b7ac4e6b775","FAAC/UNESP","7b135585-50c8-4ebf-a696-6b7ac4e6b775",1766933058926,"2025-12-28T14:44:18.926Z","jamille_lanutti@hotmail.com",[87,88],"jamille-norteza-de-lima-lanutti","lanutti-jamille-norteza-de-lima",{},{"slugs":91,"email":94,"objectID":95,"url":11,"filiation":81,"lastmodified":83,"createDate":84,"id":11,"name":96,"lastName":97,"designation":11,"description":98,"_id":95,"path":99,"role":11},[92,93],"luis-carlos-paschoarelli","paschoarelli-luis-carlos","lcpascho@yahoo.com.br","dd7fb6cb-41e7-45c5-a158-9ed4e4388d8c","Luis Carlos","Paschoarelli",{},"people/dd7fb6cb-41e7-45c5-a158-9ed4e4388d8c",{"url":11,"designation":11,"name":8,"_id":10,"description":101,"email":13,"role":11,"lastName":6,"path":102,"filiation":81,"id":11,"createDate":84,"slugs":103,"objectID":10,"lastmodified":83},{},"people/0cc461c9-9568-4fc8-ae03-cf6968d35f2c",[104,105],"stanislav-poussep","poussep-stanislav",[82,95,10],"enabled",1,[110],"comfort-perception-through-the-visual-evaluation-of-seats-parameters-for-design",{"pageRange":12,"parent":20,"updateDate":112,"data":113,"trackId":31,"type":32,"typeData":122,"metaData":201,"langs":203,"_id":204,"contributors":205,"contributorsIds":226,"createDate":214,"status":107,"download":108,"slugs":227,"slug":228},"2025-12-28T11:52:10-03:00",{"secondary":114,"primary":118},{"keywords":115,"excerpt":116,"title":117},"\u003Cp>prehension, instrumented glove, ergonomic assessment\u003C/p>","\u003Cp>The human prehension is a complex action, which requires assessment for ergonomic hand tools design. The use of the instrumented gloves is a procedure widely utilized for this type of analysis in both robotics and biomechanics. This paper presents an analysis of major issues involved in the human prehension and holds their importance to build a glove prototype instrumented with FSRs sensors. The construction of such equipment permits to identify concentrated pressure points on the hand palm surface, characterizing one of the most viable alternatives for ergonomics and biomechanics assessments of the hand tools design.\u003C/p>","\u003Cp>Instrumented Gloves Utilization in Biomechanic Assessment of the Human Hand Prehension\u003C/p>",{"keywords":119,"excerpt":120,"title":121},"\u003Cp>preensão, luva instrumentada, avaliação ergonômica\u003C/p>","\u003Cp>A preensão humana é uma ação complexa, da qual se exige avaliação para projetar instrumentos manuais ergonômicos. O uso de luvas com sensores é uma técnica muito utilizada para este tipo de análise nas áreas da robótica e biomecânica. Esse artigo apresenta uma análise sobre os principais aspectos envolvidos na preensão humana e sua importância na construção de um protótipo de luva instrumentada com sensores FSRs. A construção de um equipamento dessa natureza permite identificar pontos de pressão concentrada sobre a superfície palmar das mãos, caracterizando uma das alternativas mais viáveis para avaliações do design ergonômico de instrumentos manuais.\u003C/p>","\u003Cp>Utilização de Luvas Instrumentadas em Avaliações Biomecânicas da Preensão da Mão Humana\u003C/p>",{"startPage":123,"file":124,"references":127,"endPage":200,"track":31,"doi":11},"1021",{"fullpath":125,"name":126},"https://storage.googleapis.com/memoria-ped.appspot.com/articles%2F10_congresso_brasileiro_de_pesquisa_e_desenvolvimento_em_design%2Ftu0kxfwj-1766933530-1021-1030.pdf","tu0kxfwj-1766933530-1021-1030.pdf",[128,131,134,137,140,143,146,149,152,155,158,161,164,167,170,173,176,179,182,185,188,191,194,197],{"id":129,"label":130},"ab053b6c-f87a-4be4-aa7a-fcb61cbac671","HALL, C. External pressure at the hand during object handling and work with tools. \u003Cstrong>International Journal of Industrial Ergonomics\u003C/strong>, Vol. 20 (03): p. 191-206, 1997.",{"label":132,"id":133},"HENNINGSEN, H.; ENDE-HENNINGSEN B.; GORDON A. M. Contribution of tactile afferent information to the control of isometric finger forces. \u003Cstrong>Experimental Brain Research\u003C/strong> 105: p. 312–217, 1995.","8c6b1a36-5692-4e92-bc61-f29df261bdd8",{"label":135,"id":136},"IBERALL, T. The nature of human prehension: three dexterous hands in one. \u003Cstrong>IEEE Proceedings International Conference on Robotics and Automation\u003C/strong>, vol. 2, 1987.","6aced81b-bd56-44b5-8110-14870868f9aa",{"label":138,"id":139},"INTERLINK ELECTRONICS INC. \u003Cstrong>FSR – Force Sensing Resistors Integration Guide and Evaluation Parts Catalog\u003C/strong>. Camarillo (USA), 26p, (Version 1.0), 2002.","ee430674-387e-45fc-b23e-f35002fffc9a",{"id":141,"label":142},"576a4ba8-cc09-455e-b9c5-17ab4c9b85aa","JENMALM, P.; JOHANSSON, R. S.. Visual and somatosensory information about object shape control manipulative fingertip forces. \u003Cstrong>Journal of Neuroscience\u003C/strong> 17: p. 4486–4499, 1997.",{"label":144,"id":145},"JONES, L. A.; PIATESKI, E. Contribution of tactile feedback from the hand to the perception of force. \u003Cstrong>Experimental Brain Research\u003C/strong> 168: 298–302, 2006.","6bd3da31-87ea-4f00-aeef-3ac81cec8aab",{"label":147,"id":148},"JEANNEROD, M. The timing of natural prehension movements. \u003Cstrong>Journal of Motor Behavior\u003C/strong> 16: p. 235–254, 1984.","6b2e8a55-74b4-4fb5-9b05-7a23a377bf10",{"id":150,"label":151},"31b01fb7-8639-4531-b4c7-0e0648fb4d2d","KONG, Y.; FREIVALDS, A. Evaluation of meat-hook handle shapes. \u003Cstrong>International Journal of Industrial Ergonomics\u003C/strong>, Vol. 32, p. 13–23, 2003.",{"label":153,"id":154},"KONG, Y.; LOWE, B. D. Optimal cylindrical handle diameter for grip force tasks. \u003Cstrong>International Journal of Industrial Ergonomics\u003C/strong>. 35 (06): p. 495-507, 2005.","db112913-9d64-47fa-acd8-199594efea18",{"label":156,"id":157},"LU, M. L.; JAMES, T.; LOWE, B.; BARRERO, M.; KONG, Y. K. An investigation of hand forces and postures for using selected mechanical pipettes. \u003Cstrong>International Journal of Industrial Ergonomics\u003C/strong> 38: p. 18–29, 2008.","9eba2fa2-2b4d-4af9-93d6-ba0a5fa068f6",{"label":159,"id":160},"MOREIRA, D. ÁLVAREZ, R. R. A.; GOGOY, J. R; CAMBRAIA, A. N. Abordagem sobre preensão palmar utilizando o dinamômetro JAMAR®: uma revisão de literatura. Brasília: \u003Cstrong>Revista Brasileira Ciência e Movimento\u003C/strong>, v. 11 n. 2 (06): p. 95-99, 2003.","a68f50f8-772b-4737-99ae-e025ebd46691",{"id":162,"label":163},"cbb1cf18-ef4c-4f95-b66e-3597d01d527a","MURALIDHAR, A.; BISHU, R. R.; HALLBECK; M. S. The development and evaluation of an ergonomic glove. \u003Cstrong>Applied Ergonomics\u003C/strong>, Vol. 30 555-563, 1999.",{"label":165,"id":166},"OKAMURA, A. M.; SMABY, N.; CUTKOSKY, M. R. An Overview of Dexterous Manipulation. \u003Cstrong>Proceedings of the 2000 IEEE. International Conference on Robotics & Automation\u003C/strong>. San Francisco: CA (04) 2000.","4ff7269a-68f1-42a2-b1b7-93ae3b6a5842",{"label":168,"id":169},"PASCHOARELLI, L. C.; GIL COURY, H. J. C. Calibração de Sensores FSRs: definindo a equação a partir da regressão polinomial. In: \u003Cstrong>Anais X Congresso Brasileiro de Biomecânica\u003C/strong>. 02: p. 86-89, 2003.","84ef63f5-6d31-411b-a22f-7ea0e8966045",{"label":171,"id":172},"PASCHOARELLI, L. C.; GIL COURY, H. J. C. O uso de FSR na avaliação de preensão de instrumentos manuais: uma alternativa metodológica para o design ergonômico de empunhadura. In: \u003Cstrong>Anais do VI Congresso Brasileiro de Pesquisa e Desenvolvimento em Design – P&D Design\u003C/strong>. 2004.","914fe6be-12fb-4cb8-b94f-2fdf2b619d05",{"id":174,"label":175},"93fd81dc-be65-4bd4-9020-54ec784a4124","PUTZ-ANDERSON, V. \u003Cstrong>Cumulative trauma disorders\u003C/strong>: a manual for musculoeskeletal disease of upper limbs. London: Taylor & Francis, 1988, 151p.",{"label":177,"id":178},"SANTELLO, M.; SOECHTING, J. F. Force synergies for multifingered grasping. \u003Cstrong>Experimental Brain Research\u003C/strong> 133: p.457–467, 2000.","6174ca34-f3ac-44d5-b2e2-c835c623e655",{"label":180,"id":181},"SILVA, D. C. ; PASCHOARELLI, Luis Carlos ; ULSON, J. A. C. ; RAZZA, B. M. . Diferentes Métodos de Calibração de Sensores FSRs. In: \u003Cstrong>Anais do VII Congresso Internacional de Ergonomia e Usabilidade de Interfaces Humano-Tecnologia - VII Ergodesign\u003C/strong>, 2007, Camboriú.","6593406b-ec07-4362-a47c-48b269e2455d",{"label":183,"id":184},"SOLO®. \u003Cstrong>Luva X-Thermo\u003C/strong>. Disponível em: http://www.solobr.com/solo/produtos/produto.aspx?idcategoria=1&idsubcategoria=9&idproduto=519. Acessado em: 14/11/2007.","9755d7db-3d25-4d6f-8cbe-3a8c47be0b53",{"id":186,"label":187},"64ae0a32-45b1-48a4-9d05-57a76f93b0fa","TARCHANIDIS, K. N.; LYGOURAS, J. N. Data Glove With a Force Sensor. \u003Cstrong>IEEE Transactions on Instrumentation and Measurement\u003C/strong>, Vol. 52 (06), n. 3, p. 984 – 989, 2003.",{"id":189,"label":190},"70c53b8d-a2bc-403e-a800-14a612bc201c","WEIGELT, C.; BOCK, O. Adaptation of grasping responses to distorted object size and orientation. \u003Cstrong>Experimental Brain Research\u003C/strong>, 181: p. 139–146, 2007.",{"label":192,"id":193},"WINGES, S. A.; SANTELLO, M. From Single Motor Unit Activity to Multiple Grip Forces: Mini-review of Multi-digit Grasping. \u003Cstrong>Integrative and Comparative Biology\u003C/strong> 45: p.679–682, 2005.","106dab3e-d77e-452e-af6a-227d2e16daa3",{"id":195,"label":196},"8a38b613-bcb8-41fc-b677-90a6002c2d51","ZATSIORSKY V. M.; GREGORY R. W.; LATASH M. L. Force and torque production in static multifinger prehension: biomechanics and control. I. Biomechanics. \u003Cstrong>Biological Cybernetics\u003C/strong> 87: p. 50–57, 2002.",{"label":198,"id":199},"ZATSIORSKY, V. M.; LATASH, M. L.; GAO, F.; SHIM, J. K. The principle of superposition in human prehension. \u003Cstrong>Robotica\u003C/strong> 22: p. 231–234, 2004.","fbaac4d1-b7ae-4bc7-a8a3-8c89b77c0255","1030",{"updateDate":11,"createDate":202,"deleteDate":11},1766933530,[73,74],"705e40fe-8c9d-41e0-9fc0-0d134c8af0b6",[206,219,223],{"lastmodified":207,"slugs":208,"url":11,"designation":11,"name":211,"filiation":212,"id":11,"path":213,"createDate":214,"objectID":215,"lastName":216,"description":217,"email":218,"role":11,"_id":215},1766933530782,[209,210],"danilo-correa-silva","silva-danilo-correa","Danilo Corrêa","Universidade Estadual Paulista","people/d3e0e48b-733b-4763-91f6-b29fe7508ed0","2025-12-28T14:52:10.782Z","d3e0e48b-733b-4763-91f6-b29fe7508ed0","Silva",{},"danilodesign2005@gmail.com",{"email":220,"createDate":214,"lastmodified":207,"path":99,"role":11,"slugs":221,"description":222,"designation":11,"filiation":212,"id":11,"_id":95,"lastName":97,"url":11,"objectID":95,"name":96},"lcpascho@faac.unesp.br",[92,93],{},{"objectID":10,"email":13,"path":102,"role":11,"_id":10,"filiation":212,"description":224,"name":8,"lastmodified":207,"createDate":214,"slugs":225,"lastName":6,"id":11,"url":11,"designation":11},{},[104,105],[215,95,10],[228],"instrumented-gloves-utilization-in-biomechanic-assessment-of-the-human-hand-prehension",{"pageRange":12,"parent":20,"updateDate":230,"data":231,"trackId":31,"type":32,"typeData":240,"metaData":298,"langs":300,"_id":301,"contributors":302,"contributorsIds":315,"createDate":308,"status":107,"download":108,"slugs":316,"slug":317},"2025-12-28T11:52:35-03:00",{"secondary":232,"primary":236},{"keywords":233,"excerpt":234,"title":235},"\u003Cp>ergonomics, mouse, HCI\u003C/p>","\u003Cp>Besides the computer mouse being irreplaceable for the GUI manipulation, it is not equally efficient for all kinds of tasks. Many common tasks done with the aid of this pointing device, such as drawing, are incompatible with its own nature. The present study compares different mouse types by the pressure required from the user’s hand during their manipulation. Specific equipment and procedures were developed to handle this comparison by the means of FSR and AFG (strain gauge) sensors. The results showed significant differences (p ≤ 0.05) between the mouses, suggesting higher task difficulty in cases of higher pressures registered.\u003C/p>","\u003Cp>Evaluation of the Hand Pressure and Task Performance in Activities Involving Activation By Mouse\u003C/p>",{"keywords":237,"excerpt":238,"title":239},"\u003Cp>ergonomia, mouse, HCI\u003C/p>","\u003Cp>O mouse, apesar de ser insubstituível para a manipulação das GUIs, não desempenha todas suas funções com igual eficiência. Algumas tarefas freqüentemente realizadas com este dispositivo são pouco compatíveis com sua natureza, com destaque para aquelas necessárias na realização de desenhos. Este estudo objetivou avaliar se as tarefas executadas com dois diferentes tipos de mouses exigem diferentes pressões da mão. Foram desenvolvidos procedimentos e equipamentos capazes de realizar medições através de sensores FSRs e um AFG (strain gauge). Os resultados apontaram diferenças (p ≤ 0,05) entre os mouses, o que representa uma maior dificuldade nas maiores pressões.\u003C/p>","\u003Cp>Avaliação da Pressão da Mão e Desempenho da Tarefa em Atividades de Acionamento do Mouse\u003C/p>",{"startPage":241,"file":242,"references":245,"endPage":297,"track":31,"doi":11},"1041",{"fullpath":243,"name":244},"https://storage.googleapis.com/memoria-ped.appspot.com/articles%2F10_congresso_brasileiro_de_pesquisa_e_desenvolvimento_em_design%2Ftu0kxfwj-1766933554-1041-1043.pdf","tu0kxfwj-1766933554-1041-1043.pdf",[246,249,252,255,258,261,264,267,270,273,276,279,282,285,288,291,294],{"id":247,"label":248},"3aff4824-d4ea-4d55-83eb-1d129faa4919","HALL, C. External pressure at the hand during object handling and work with tools. \u003Cstrong>International Journal of Industrial Ergonomics\u003C/strong>. 20(03): 191-206. 1997.",{"label":250,"id":251},"HARVEY, R., PEPER, E., 1997. Surface electromyography and mouse use position. \u003Cstrong>Ergonomics\u003C/strong> 40 (8), 781-789.","bd145838-5346-420c-8abf-770bf7bbf2ad",{"label":253,"id":254},"ISO (INTERNATIONAL ORGANISATION FOR STANDARDISATION), 1999. \u003Cstrong>Ergonomic requirements for office work with visual display terminals (VDTs)\u003C/strong> - Part 9 - Requirements for non-keyboard input devices (ISO 9241-9). Report Number ISO/TC 159/SC4/WG3 N147.","cd9651c8-daae-486a-b929-f0fde3bd8aa5",{"label":256,"id":257},"JELLINEK, H.D., CARD, S.K., 1990. Powermice and user performance. \u003Cstrong>Proceedings of the ACM Conference on Human Factors in Computing Systems - CHI ’90\u003C/strong>. ACM, New York, 213-220.","537b00fe-7426-4051-86bd-45b5a7aeb4b5",{"label":259,"id":260},"JENSEN, T.R., RADWIN, R.G., WEBSTER, J.G. A conductive polymer sensor for measuring external finger forces. \u003Cstrong>Journal of Biomechanics\u003C/strong>. 24 (09): 851-853. 1991.","18ea57d8-442d-4f5e-8007-de833ae71e33",{"id":262,"label":263},"5506bf75-4913-46bf-abb6-df6d23929455","JOHNSON, P., MCLOONE, H., ADAMS, E., ARMS, S., 2000. Developing miniature force-sensing technologies for measuring the forces applied to a computer mouse. \u003Cstrong>Proceedings of the IEA 2000/HFES 2000 Congress\u003C/strong> (6), 629-632.",{"label":265,"id":266},"JOHNSON, P.E., DROPKIN, J.J., HEWES, J., REMPEL, D., 1993. Office ergonomics: motion analysis of computer mouse usage. \u003Cstrong>Proceedings of the American Industrial Hygiene Conference and Exposition\u003C/strong>, 12-13.","5f710c47-9417-4f90-804f-33e97a9d2ab0",{"id":268,"label":269},"0d7d1d3b-2e93-493e-8d80-805d5679020a","JOHNSON, P.W., TAL, R., SMUTZ, W.P., REMPEL, D.M., 1994. 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