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The effect of static physical work on the work safety

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Języki publikacji
EN
Abstrakty
EN
Physical activity is an inseparable sphere of human life, and is not rarely associated with work. Evolution has adapted man to perform various activities that meet their life needs. Man is created for walking, sitting, lying and standing. All these activities should take place in turns. Physical work should be varied in terms of dynamics and not limit people to stay in one position while performing work. The position changes, among others, to increase blood pressure, in addition, stimulates the heart and respiratory system, as well as improves the efficiency of both physical and mental work. In turn, taking only one position for a long time, which often occurs in static physical work, causes many health problems. For musculoskeletal disorders related to a non-ergonomic work position and a forced position at work, every fourth employee in Europe complains. In Poland, musculoskeletal disorders are one of the most common causes of absence at work. In Polish enterprises, the assumption that profit is the most important is still dominant. Man is rarely seen as the most important capital of an enterprise that needs to be taken care of. For many employers, all additional measures related to shaping safe working conditions are only costs, not investment and potential profit. This paper presents the effects of static physical work in relation to work safety in the light of publicly available reports and information. The review has been enriched with the results of research carried out in one of the production enterprises of the SMEs sector. The research results presented in the paper are pilot and constitute an introduction to a large research work.
Wydawca
Rocznik
Strony
47--54
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
  • Czestochowa University of Technology, Poland
  • Saratov State Law Academy, Russia
Bibliografia
  • [1] Brandl, Ch., Mertens, A., Schlick, Ch., 2017. Effect of sampling interval on the reliability of ergonomic analysis using the Ovako working posture analysing system (OWAS), International Journal of Industrial Ergonomics, 57, 68-73.
  • [2] Enez, K., Nalbantoglu, S.S., 2019. Comparison of ergonomic risk assessment outputs from OWAS and REBA in forestry timber harvesting, International Journal of Industrial Ergonomics, 70, 51-57.
  • [3] EU-OSHA, 2019. Dolegliwości zdrowotne związane z wykonywana praca zawodową, https://osha.europa.eu/pl (10.10.2019).
  • [4] Eurofound, 2010. European Working Condition Survey, www.eurofound.europa.eu/surveys/smt/ewcs/results.htm (19.10.2019).
  • [5] Główny Urząd Statystyczny, 2019, Wypadki przy pracy - dane statystyczne, www.gus.gov.pl (10.10.2019).
  • [6] Górska, E., 2012. Metody oceny ryzyka zawodowego, Wyd. OWPW, Warszawa.
  • [7] Hellig, T., Mertens, A., Brandl, Ch., 2018. The interaction effect of working postures on muscle activity and subjective discomfort during static working postures and its correlation with OWAS, International Journal of Industrial Ergonomics, 68, 25-33.
  • [8] Jackson, A.S., Borg, G., Zhang, J.J., Laughery, K.R., Chen, J., 1997. Role of physical work capacity and load weight on psychophysical lift ratings, International Journal of Industrial Ergonomics, 20(3), 181-190.
  • [9] Koradecka, D., 2009. Bezpieczeństwo i higiena pracy, CIOP-PIB.
  • [10] Krause, M., Profaska, M., 2012. Aktualne wytyczne oceny ryzyka zawodowego dla obciążenia pracą fizyczną, Systems Supporting Production Engineering, 2, 101-111.
  • [11] Łastowiecka-Moras, E., 2019. Kobiety na stanowiskach pracy fizycznej - ograniczenia wynikające z płci i wieku, Bezpieczeństwo Pracy - Nauka i Praktyka, CIOP-PIB, 6(573), 12-15.
  • [12] Luger, T., Seibt, R., Cobb, T.J., Rieger, M.A., Steinhilber, B., 2019. Influence of a pas-sive lower-limb exoskeleton during simulated industrial work tasks on physical load, upper body posture, postural control and discomfort, Applied Ergonomics,80, 152-160.
  • [13] Makowiec-Dąbrowska, T., Bortkiewicz, A., Gadzicka, E., 2007. Wysiłek fizyczny w pracy zawodowej - czynnik ryzyka czy ochrona przed chorobami układu krążenia. Medycyna Pracy, 58(5), 423-432.
  • [14] Malińska, M., 2014. Profilaktyka dolegliwości mięsniowo-szkieletowych związanych z wykonywaną pracą - promocja aktywności fizycznej w miejscu pracy, Bezpieczeństwo Pracy - Nauka i Praktyka, 3, 25-29.
  • [15] Markowska-Dyner, A. 2019. Technical aspects of the dentist’s work safety, Production Engineering Archives, 21(21), 40-43, https://doi.org/10.30657/pea.2018.21.09
  • [16] Meerding, W.J., Ijzelenberg, W., Koopmanschap, M.A., Severens, J.L., Burdorf, A., 2005. Health problems lead to considerable productivity loss at work among workers with high physical load jobs, Journal of Clinical Epidemiology, 58, 517-523.
  • [17] Nevala, N., Holopainen, L., Kinnunen, O., Hanninen, O., 2003. Reducing the physical work load and strain of personal helpers through clothing redesign, Applied Ergonomics, 34(6), 557-563.
  • [18] Niciejewska, M., Klimecka-Tatar, D., 2017. The OHS Management System in the “Small-Sized” production Company, Production Engineering Archives, 13, 49-52.
  • [19] Saja, P., Woźny, A., Pacana, A, Dobosz, M. 2020. Additional components of risk assessment and their impact on the probability parameter, Production Engineering Archives, 14(14), 11-14. https://doi.org/10.30657/pea.2017.14.03
  • [20] Teymourian, K., Seneviratne, D., Galar, D., 2017. Ergonomics Contribution in Maintainability, Management Systems in Production Engineering, 25(3), 217-223. https://doi.org/10.1515/mspe-2017-0031
  • [21] Ulewicz, R., Klimecka-Tatar, D., Mazur, M., Niciejewska, M., 2015. Wybrane aspekty zarządzania bezpieczeństwem i higieną pracy, SMJiP, Częstochowa, Poland.
  • [22] Wykowska, M., 2009. Ergonomia jako nauka stosowana, UWN-D AGH, Kraków.
  • [23] ZUS, 2011. Absencja chorobowa 2010, Depatmanet Statystyki i Prognoz Aktualnych, Warszawa, http://www.zus.pl/files/absencja2010 (12.10.2019
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-46a0b36a-e41a-4158-b060-0d210a325d94
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