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Comparison of Six Observational Methods for Assessing Arm- and Hand-intensive Tasks

어깨 및 팔 동작 부하 측정을 위한 관찰적 기법 비교

  • Dohyung Kee (Department of Industrial Engineering, Keimyung University)
  • 기도형 (계명대학교 산업공학과)
  • Received : 2024.05.06
  • Accepted : 2024.06.16
  • Published : 2024.06.30

Abstract

This study aims to compare six observational methods for assessing arm- and hand-intensive tasks, based on literature review. The comparison was conducted in viewpoints of body regions, force/external load, motion repetition, other factors including static posture, coupling, duration/break, pace, temperature, precision task, and final risk or exposure level. The number of risk factors assessed was more, and assessment procedure was more complex than the observational methods for assessing whole-body postural loads such as Ovako Working Posture Analysis System(OWAS), Rapid Upper Limb Assessment(RULA), and Rapid Entire Body Assessment(REBA). Due to these, the intra- and inter-reliabilities were not high. A past study showed that while Hand Arm Risk Assessment Method(HARM) identified the smallest proportion of the work tasks as high risk, Strain Index(SI) and Quick Exposure Check(QEC) hand/wrist were the most rigorous with classifying most work tasks as high risk. This study showed that depending on the observational technique compared, the evaluation factors, risk or exposure level, and evaluation results were different, making it necessary to select a technique appropriate for the characteristics of the work being assessed.

Keywords

References

  1. Ministry of Employment and Labor(2022), Industrial Accident Status Analysis, Ministry of Employment and Labor, Seoul.
  2. D. Kee(2023), "Characteristics of work-related musculoskeletal disorders in Korea." International Journal of Environmental Research and Public Health, 20:1024.
  3. O. Karhu, P. Kansi, I. Kuorinka(1977), "Correcting working postures in industry: A practical method for analysis." Applied Ergonomics, 8(4):199-201.
  4. L. McAtamney, E. N. Corlett(1993), "RULA: A survey method for the investigation of work-related upper limb disorders." Applied Ergonomics, 24(2): 91-99.
  5. S. Hignett, L. McAtamney(2000), "Rapid Entire body assessment (REBA)." Applied Ergonomics, 31:201-205.
  6. B. D. Lowe, P. G. Dempsey, E. M. Jones(2019), "Ergonomics assessment methods by ergonomics professionals." Applied Ergonomics, 81:102882.
  7. M. Douwes, H. de Kraker(2012), "HARM overview and its application: some practical examples." Work, 41:4004-4009.
  8. M. Douwes, H. de Kraker(2014), "Development of a non-expert risk assessment method for hand-arm related tasks (HARM)." International Journal of Industrial Ergonomics, 44:316-327.
  9. Health and Safety Executive. Assessment of repetitive tasks of the upper limb (the ART tool). Available online: https://www.hse.gov.uk/pubns/indg438.htm (accessed on 20 December 2023).
  10. E. Occhipinti(1998), "OCRA: a concise index for the assessment of exposure to repetitive movements of the upper limbs." Ergonomics, 41(9):1290-1311.
  11. ACGIH Worldwide(2001), Hand Activity Level TLV, ACGIH, Cincinnati, OH.
  12. J. S. Moore(1995), "Garg, A. The strain index: a proposed method to analyze jobs for risk of distal upper extremity disorders." American Industrial Hygiene Association Journal, 56:443-458.
  13. G. David, V. Woods, G. Li, P. Buckle(2008), "The development of the quick exposure check (QEC) for assessing exposure to risk factors for work-related musculoskeletal disorders." Applied Ergonomics, 39:57-69.
  14. Nordiska Ministerradet.(1994), Vagar Till Farre Arbetsskador-Utveckling av Nordisk Ergonomitillsyn, Modeller for Ergonomisk Riskvardering TemaNord 1994:514, Nordiska Ministerradet, Copenhagen, Denmark.
  15. K. S. Lee, J. W. Yeom, H. M. Hur, J. M. Sohn, D. M. Oak, S. G. Park(2009), "Comparisons of different evaluation tools for musculoskeletal disorders." Fall Conference of the Ergonomics Society of Korea, 11:205-209.
  16. K. S. Lee, J. H. Kim, M. S. Jung. S. J. Jeon, Y. J. Chun(2007), "Comparison of assessment by OCRA Checklist and RULA at an auto Manufacturing Plant." Journal of the Ergonomics Society of Korea, 26(4):153-160.
  17. M. C. Jung, K. S. Lee(2019), "Comparison of assessment by OCRA Checklist and RULA at an auto Manufacturing Plant." Journal of the Ergonomics Society of Korea, 38(6):445-455.
  18. G. Borg(1998), Borg's perceived exertion and pain scales, Human Kinematics, IL, USA.
  19. K. Kjellberg, P. Lindberg, T. Nyman, P. Palm, I. M. Rhen, K. Eliasson, R. Carlsson, N. Balliu, M. Forsman(2015), "Comparisons of six observational methods for risk assessment of repetitive work-Results from a consensus assessment." Proceedings of the 19th Triennial Congress of the International Ergonomics Association, Melbourne, VIC, Australia, 9-14 August.
  20. B. Bao, N. Howard, P. Spielholz, B. Silverstein (2006), "Quantifying repetitive hand activity for epidemiological research on musculoskeletal disorders - Part II: comparison of different methods of measuring force level and repetitiveness." Ergonomics, 49(4):381-392.
  21. T. Nyman, I. M. Rhen, P. J. Johansson, K. Eliasson, K. Kjellberg, P. Lindberg, X. Fan, M. Forsman (2023), "Reliability and validity of six selected observational methods for risk assessment of hand intensive and repetitive work." International Journal of Environmental Research and Public Health, 20:5505.