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Vibrações de corpo inteiro no transporte coletivo urbano
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Palavras-chave

Vibração de corpo inteiro
Vibração ocupacional
Motorista de ônibus

Como Citar

Holanda, J. J. da S., Franz, L. A. dos S., Andrade, I. F., & Bemvenuti, R. H. (2020). Vibrações de corpo inteiro no transporte coletivo urbano: uma revisão sistemática quanto a sua relação com as condições de trabalho. Labor E Engenho, 14, e020020. https://doi.org/10.20396/labore.v14i0.8661991

Resumo

O trabalho dos motoristas de ônibus urbano está sujeito a uma exposição constante a vibrações ocupacionais, que podem ter efeitos adversos para a saúde dos profissionais. Existe em relação a esse meio uma preocupação especial quanto as Vibrações de Corpo Inteiro (VCI), devido aos inúmeros fatores que podem influenciar os níveis de exposição. A exposição a VCI no local de trabalho pode ser um dos fatores responsáveis pelas dores lombares e outras doenças ocupacionais dos condutores. Atualmente já se tem conhecimento de estratégias preventivas que podem reduzir a exposição à vibração e contribuir para uma diminuição dos seus efeitos. Por conseguinte, o objetivo deste estudo é empreender uma revisão sistemática da literatura para determinar os principais efeitos no corpo humano gerado pela exposição a VCI e sua relação com as condições de trabalho dos condutores de ônibus. O estudo busca ainda explorar estratégias preventivas que busquem reduzir a exposição à vibração ocupacional desses profissionais.

https://doi.org/10.20396/labore.v14i0.8661991
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Referências

Abbate, C., Micali, E., Giorgianni, C., Munao, F., Brecciaroli, R., Salmaso, L., & Germano, D. (2004). Affective correlates of occupational exposure to whole-body vibration - A case-control study. Psychotherapy and Psychosomatics, 73(6), 375-379.

Akobeng, A. K. (2005). Principles of evidence based medicine. Archives of Disease in Childhood, 90(8), 837-840.

Amari, M., Caruel, E., & Donati, P. (2015). Inter-individual postural variability in seated drivers exposed to whole-body vibration. Ergonomics, 58(7), 1162-1174.

Araújo, A. V., Arcanjo, G. S., Fernandes, H. A., & Georgia, S. (2018). Ergonomic work analysis: a case study of bus drivers in the private collective transportation sector. Work, 60(1), 41-47.

Araya-solano, T., & Medina-Escobar, L. (2020). Determinación de la exposición ocupacional a vibraciones en cuerpo entero en conductores de autobús en una parte del gran área metropolitana, Costa Rica. Revista Tecnología en Marcha, 33, 88-98.

Barbosa, C. M. G., Maia, A. L. S., Matos, M. P., Gomes, G. S. S., & Souza, S. F. (2019). Condições de trabalho e desconforto corporal dos rodoviários da região working conditions and body discomfort of the road works of the salvador metropolitan region. International Journal on Working Conditions. N. 18.

Booth, A., Papaioannou, D., & Sutton, A. (2016). Systematic approaches to a successful literature review.

Bovenzi, M. (2009). Metrics of whole-body vibration and exposure-response relationship for low back pain in professional drivers: a prospective cohort study. International Archives of Occupational and Environmental Health, 82(7), 893-917.

Brunoro, C., Sznelwar, L. I., Bolis, I., & Abrahao, J. (2012). Contributions of ergonomics to the construction of bus drivers health and excellence in public transport and at work. Work, 41(suppl.1), 30-35.

Burgess-Limerick, R. (2016). Measuring and managing workplace whole-body vibration exposures. Acoustics Australia, 44(1), 129-135.

Caffaro, F., Preti, C., Micheletti, C. M., & Cavalli, E. (2017). Three-axial evaluation of whole-body vibration in agricultural telehandlers: the effects of an active cab-suspension system. Journal of Occupational and Environmental Hygiene, 14(10), 758-770.

Chaudhary, D. K., Bhattacherjee, A., Patra, A. K., Upadhyay, R., & Chau, N. (2019). Associations between whole-body vibration exposure and occupational and personal factors in drill operators in indian iron ore mines. Mining Metallurgy & Exploration, 36(3), 495-511.

Costa, N., & Arezes, P. M. (2009). The influence of operator driving characteristics in whole-body vibration exposure from electrical fork-lift trucks. International Journal of Industrial Ergonomics, 39(1), 34-38.

Costa, N., Arezes, P. M., & Melo, R. B. (2014). Effects of occupational vibration exposure on cognitive/motor performance. International Journal of Industrial Ergonomics, 44(5), 654-661.

Fabbri, S., Silva, C., Hernandes, E., Octaviano, F., Di Thommazo, A., & Belgamo, A. (2016). Improvements in the StArt tool to better support the systematic review process. Proceedings of the 20th International Conference on Evaluation and Assessment in Software Engineering – EASE ’16.

Harris, M, A., Marion, S. A., Spinelli, J. J., Tsui, J. K. C., & Teschke, K. (2012). Occupational exposure to whole-body vibration and parkinsons disease: results from a population-based case-control study. American Journal of Epidemiology, 176(4), 299-307.

Harris, M. A., Cripton, P. A., & Teschke, K. (2012). Retrospective assessment of occupational exposure to whole-body vibration for a case-control study. Journal of Occupational and Environmental Hygiene, 9(6), 371-380.

ISO 2631-1. (1997). Mechanical vibration and shock - evaluation of human exposure to whole body vibration – part 1: general requirements. International Organization for Standardization.

Johanning, E. (2015). Whole-body vibration-related health disorders in occupational medicine – an international comparison. Ergonomics, 58(7), 1239-1252.

Kuijer, P. P. F. M., Van der Molen, H. F., Schop, A., Moeijes, F., Frings-Dresen, M. H. W., & Hulshof, C. T. J. (2015). Annual incidence of non-specific low back pain as an occupational disease attributed to whole-body vibration according to the national dutch register 2005-2012. Ergonomics, 58(7), 1232-1238.

Langer, T. H., Iversen, T. K., Andersen, N. K., Mouritsen, O. O., & Hansen, M. R. (2012). Reducing whole-body vibration exposure in backhoe loaders by education of operators. International Journal of Industrial Ergonomics, 42(3), 304-311.

Langer, T. H.; Ebbesen, M. K., & Kordestani, A. (2015). Experimental analysis of occupational whole-body vibration exposure of agricultural tractor with large square baler. International Journal of Industrial Ergonomics, 47, 79-83.

Lu, X., Takala, E. P., Topila, E., Marjanen, Y., Kaila-Kangas, L., & Lu, T. (2017). An optimal sampling approach to modelling whole-body vibration exposure in all-terrain vehicle driving. Ergonomics, 60(8), 1074-1084.

Mani, R., Milosavljevic, S., & Sullivan, S. J. (2010). The effect of occupational whole-body vibration on standing balance: a systematic review. International Journal of Industrial Ergonomics, 40(6) 698-709.

Mayton, A. G., Amirouche, F., & Jobes, C. C. (2005). Comparison of seat designs for underground mine haulage vehicles using the absorbed power and iso 2631-1(1985)-based acgih threshold limit methods. International Journal of Heavy Vehicle Systems, 12(3), 225-238.

Moher, D. (2009). Preferred Reporting Items for Systematic Reviews and Meta-Analyses: The PRISMA Statement. Annals of Internal Medicine, 151(4), p. 264.

Montebelo, R., Orlando, A., Porto, D., Zaniro, D., & Fabbri, S. (2007). Srat (systematic review automatic tool) uma ferramenta computacional de apoio à revisão sistemática. In: V Experimental Software Engineering Latin American Workshop, ICMC – São Carlos, SP, Brasil.

Fundação Jorge Duprat Figueiredo, de Segurança e Medicina do Trabalho. (2013). Normas de Higiene Ocupacional – NHO 09: Avaliação da exposição ocupacional a vibrações de corpo inteiro.

Brasil. (2014). Ministério do Trabalho e Emprego. Norma Regulamentadora NR-15 – Atividade e operações insalubres – Anexo Nº 8 Vibrações, Brasília: Ministério do Trabalho e Emprego.

Okunribido, O. O., Magnusson, M., & Pope, M. H. (2006). Low back pain in drivers: the relative role of whole-body vibration, posture and manual materials handling. Journal of Sound and Vibration, 298(3), 540-555.

Palmer, K. T., Griffin, M. J., Bendall, H., Pannett, B., & Coggon, D. (2000). Prevalence and pattern of occupational exposure to whole body vibration in great britain: findings from a national survey. Occupational and Environmental Medicine, 57(4), 229-236.

Palmer, K. T., Haward, B., Griffin, M. J., Bendall, H., & Coggon, D. (2000). Validity of self reported occupational exposures to hand transmitted and whole body vibration. Occupational and Environmental Medicine, 57(4), 237-241.

Palmer, K. T., Griffin, M. J., Sydall, H. E., Pannett, B., Cooper, C., & Coggon, D. (2003). The relative importance of whole body vibration and occupational lifting as risk factors for low-back pain. Occupational and Environmental Medicine, 60(10), 715-721.

Palmer, K. T., Harris, E. C., Griffin, M. J., Bennett, J., Reading, I., Sampson, M., & Coggon, D. (2008). Case-control study of low-back pain referred for magnetic resonance imaging, with special focus on whole-body vibration. Scandinavian Journal of Work, Environment and Health, 34(5), 364-373.

Paschold, H. W., & Sergeev, A. V. (2009). Whole-body vibration knowledge survey of us occupational safety and health professionals. Journal of Safety Research, 40(3), 171-176.

Plewa, K. M., Eger, T. R., Oliver, M. L., & Dickey, J. P. (2012). Comparison between iso 2631-1 comfort prediction equations and self-reported comfort values during occupational exposure to whole-body vehicular vibration. Journal of Low Frequency Noise Vibration and Active Control, 31(1), 43-53.

Portela B. (2014). Vibração de corpo inteiro em motoristas de ônibus: associação com variáveis de aptidão física e dor lombar. Tese de doutorado, Universidade Federal do Paraná, Curitiba, PR, Brasil.

Raffler, N., Hermanns, I., Sayn, D., Goeres, B., Ellegast, R., & Rissler, J. (2010). Assessing combined exposures of whole-body vibration and awkward posture-further results from application of a simultaneous field measurement methodology. Industrial Health, 48(5), 638-644.

Raffler, N., Ellegast, R., Kraus, T., & Ochsmann, E. (2016). Factors affecting the perception of whole-body vibration of occupational drivers: an analysis of posture and manual materials handling and musculoskeletal disorders. Ergonomics, 59(1), 48-60.

Raffler, N., Rissler, J., Ellegast, R., Schikowsky, C., Kraus, T., & Ochsmann, E. (2017). Combined exposures of whole-body vibration and awkward posture: a cross sectional investigation among occupational drivers by means of simultaneous field measurements. Ergonomics, 60(11), 1564-1575.

Rehn, B., Lundstrom, R., Nilsson, L., Liljelind, I., & Jarvholm, B. (2005). Variation in exposure to whole-body vibration for operators of forwarder vehicles – aspects on measurement strategies and prevention. International Journal of Industrial Ergonomics, 35(9), 831-842.

Simões, M. R. L., Souza, C., de Alcantara, M. A., & Assunção, A. A. (2019). Precarious working conditions and health of metropolitan bus drivers and conductors in Minas Gerais, Brazil. American Journal of Industrial Medicine, 62(11), 996-1006.

Simões, M. R. L., Assunção, A. A., & de Medeiros, A. M. (2018). Musculoskeletal pain among bus drivers and fare collectors in the metropolitan region of Belo Horizonte, Brazil. Ciência e Saúde Coletiva, 23(5), 1363-1374.

Thamsuwan, O., Blood, R. P., Ching, R. P., Boyle, l., & Johnson, P. W. (2013). Whole body vibration exposures in bus drivers: a comparison between a high-floor coach and a low-floor city bus. International Journal of Industrial Ergonomics, 43(1), 9-17.

Tiemessen, I. J. H., Hulshof, C. T. J., & Frings-Dresen, M. H. W. (2009). Effectiveness of an occupational health intervention program to reduce whole body vibration exposure: an evaluation study with a controlled pretest-post-test design. American Journal of Industrial Medicine, 52(12), 943-952.

Tiemessen, I. J. H., Hulshof, C. T. J., & Frings-Dresen, M. H. W. (2007). An overview of strategies to reduce whole-body vibration exposure on drivers: a systematic review. International Journal of Industrial Ergonomics, 37(3), 245-256.

Vecchia, F. A. D. (2019). Sistemática de avaliação de tarefas secundárias ao dirigir : uma abordagem multucriterial. Dissertação de mestrado, Universidade Federal do Rio Grande do Sul, Porto alegre, RS, Brasil.

Wahlström, J., Burstrom, L., Johnson, P. W., Nilsson, T., & Jarvholm, B. (2018). Exposure to whole-body vibration and hospitalization due to lumbar disc herniation. International archives of Occupational and Environmental Health, 91(6), 689-694.

Zanatta, M., Amaral, F. G., & Vidor, G. (2019). The role of whole-body vibration in back pain: a cross-sectional study with agricultural pilots. International Journal of Industrial Ergonomics, 74.

Zeng, X., Kociolek, A. M., Khan, M. I., Milosavijevic, S., Bath, B., & Trask, C. M. (2017). Predicting whole-body vibration exposure in canadian prairie farmers. Annals of Work Exposures and Health, 61(5), 554-565.

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