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Articles

Evaluation of effects of anti-vibration gloves on manual dexterity

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Pages 1530-1544 | Received 26 Oct 2017, Accepted 29 Jun 2018, Published online: 21 Oct 2018

References

  • Akbar-Khanzadeh, F., M. S. Bisesi, and R. D. Rivas. 1995. “Comfort of Personal Protective Equipment.” Applied Ergonomics 26 (3): 195–8.
  • Banks, W. W., and G. S. Goehring. 1979. “The Effects of Degraded Visual and Tactile Information on Diver Work Performance.” Human Factors 21 (4): 409–15.
  • Bennett, G. K. 1981. Hand-Tool Dexterity Test Psychological Corporation.
  • Bensel, C. K. 1993. “The Effects of Various Thicknesses of Chemical Protective Gloves on Manual Dexterity.” Ergonomics 36 (6): 687–96.
  • Bishu, R. R., G. Klute, and B. Kim. 1993. “The Effects of Extra Vehicular Activity (EVA) Gloves on Dexterity and Tactility.” Paper Presented at the Proceedings of the Human Factors and Ergonomics Society Annual Meeting 37 (10): 826–30.
  • Bradley, J. V. 1969. “Effect of Gloves on Control Operation Time.” Human Factors: The Journal of the Human Factors and Ergonomics Society 11 (1): 13–20.
  • Gauvin, C., C. Tellier, R. Daigle, and T. Petitjean-Roget. 2007. Évaluation de tests de dextérité appliqués aux gants de protection. (no. Rapport R-491. ). Montréal: IRSST.
  • Dandekar, K., B. I. Raju, and M. A. Srinivasan. 2003. “3-D Finite-Element Models of Human and Monkey Fingertips to Investigate the Mechanics of Tactile Sense.” Journal of Biomechanical Engineering 125 (5): 682–91.
  • Dianat, I., C. M. Haslegrave, and A. W. Stedmon. 2010. “Short and Longer Duration Effects of Protective Gloves on Hand Performance Capabilities and Subjective Assessments in a Screw-Driving Task.” Ergonomics 53 (12): 1468–83.
  • Dianat, I., C. M. Haslegrave, and A. W. Stedmon. 2012. “Methodology for Evaluating Gloves in Relation to the Effects on Hand Performance Capabilities: A Literature Review.” Ergonomics 55 (11): 1429–51.
  • Dong, R. G., S. Rakheja, T. W. McDowell, D. E. Welcome, J. Z. Wu, C. Warren, J. Barkley, B. Washington, and A. W. Schopper. 2005. “A Method for Assessing the Effectiveness of Anti-Vibration Gloves Using Biodynamic Responses of the Hand–Arm System.” Journal of Sound and Vibration 282 (3–5): 1101–18.
  • Chengalur, S. N. 2004. Kodak’s Ergonomic Design for People at Work. Hoboken, New Jersey: John Wiley & Sons.
  • Ervin, C. A. 1988. “A Standardized Dexterity Test Battery.” Paper presented at the Performance of Protective Clothing: Second symposium.
  • Fleming, S. L., C. W. Jansen, and S. M. Hasson. 1997. “Effect of Work Glove and Type of Muscle Action on Grip Fatigue.” Ergonomics 40 (6): 601–12.
  • Francis, T., and S. Anandhi. 2016. “Correlation between Thumb Length on Handgrip Strength, Hand Dexterity and Musculoskeletal Problem among Dental Professional.” Brazilian Dental Science 19 (3): 23–31.
  • Hamouda, K., S. Rakheja, K. Dewangan, and P. Marcotte. 2018. “Fingers' Vibration Transmission and Grip Strength Preservation Performance of Vibration Reducing Gloves.” Applied Ergonomics 66: 121–38.
  • Hamouda, K. 2016. “Vibration Transmission Characteristics and Grip Strength Preservation of Anti-Vibration Gloves.” Masters thesis, Concordia University.
  • Hamouda, K., S. Rakheja, P. Marcotte, and K. Dewangan. 2017. “Fingers Vibration Transmission Performance of Vibration Reducing Gloves.” Annals of Occupational Hygiene 62: 55–69.
  • Hewitt, S., R. G. Dong, D. E. Welcome, and T. W. McDowell. 2015. “Anti-Vibration Gloves?” The Annals of Occupational Hygiene 59 (2): 127–41.
  • Hines, M., and J. O'Connor. 1926. “A Measure of Finger Dexterity.” Personnel Journal 4: 379–82.
  • Jurgensen, C. E. 1943. “Extension of the Minnesota Rate of Manipulation Test.” Journal of Applied Psychology 27 (2): 164.
  • McDowell, T. W., R. G. Dong, D. E. Welcome, X. S. Xu, and C. Warren. 2013. “Vibration-Reducing Gloves: Transmissibility at the Palm of the Hand in Three Orthogonal Directions.” Ergonomics 56 (12): 1823–40.
  • Md Rezali, K. A., and M. J. Griffin. 2016. “Transmission of Vibration through Gloves: Effects of Material Thickness.” Ergonomics 59 (8): 1026–37.
  • Md Rezali, K. A., and M. J. Griffin. 2017. “Transmission of Vibration through Gloves: Effects of Contact Area.” Ergonomics 60 (1): 69–81.
  • Muggleton, J., R. Allen, and P. Chappell. 1999. “Hand and Arm Injuries Associated with Repetitive Manual Work in Industry: A Review of Disorders, Risk Factors and Preventive Measures.” Ergonomics 42 (5): 714–39.
  • Muralidhar, A., R. R. Bishu, and M. Hallbeck. 1999. “The Development and Evaluation of an Ergonomic Glove.” Applied Ergonomics 30 (6): 555–63.
  • Mylon, P., R. Lewis, M. J. Carré, and N. Martin. 2014. “A Critical Review of glove and hand Research with Regard to Medical Glove Design.” Ergonomics 57 (1): 116–29.
  • Mylon, P., R. Lewis, M. J. Carré, and N. Martin. 2016. “An Evaluation of Dexterity and Cutaneous Sensibility Tests for Use with Medical Gloves.” Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 230 (16): 2896–912.
  • Nelson, J. B., and A. Mital. 1995. “An Ergonomic Evaluation of Dexterity and Tactility with Increase in Examination/Surgical Glove Thickness.” Ergonomics 38 (4): 723–33.
  • Plummer, R., T. Stobbe, R. Ronk, W. Myers, H. Kim, and M. Jaraiedi. 1985. “Manual Dexterity Evaluation of Gloves Used in Handling Hazardous Materials.” Journal of Hand Therapy 29 (8): 819–23.
  • Rock, K. M., R. P. Mikat, and C. Foster. 2001. “The Effects of Gloves on Grip Strength and Three-Point Pinch.” Journal of Hand Therapy 14 (4): 286–90.
  • Sorock, G. S., D. A. Lombardi, D. K. Peng, R. Hauser, E. A. Eisen, R. F Herrick, and M. A. Mittleman. 2004. “Glove Use and the Relative Risk of Acute Hand Injury: A Case-Crossover Study.” Journal of Occupational and Environmental Hygiene 1 (3): 182–90.
  • Standard, I:10819: Mechanical Vibration and Shock–Hand-Arm Vibration–Method for the Measurement and Evaluation of the Vibration Transmissibility of Gloves at the Palm of the Hand, 1996. Geneva, Switzerland: International Organization of Standards.
  • Taylor, W. 1988. “The Purdue Pegboard; Norms and Studies of Reliability and Validity.” Journal of Applied Psychology 83 (2): 415–22.
  • Tiffin, J., and E. J Asher. 1948. “The Purdue Pegboard; Norms and Studies of Reliability and Validity.” Journal of Applied Psychology 32 (3): 234
  • Wang, Y., R. Wickstrom, S. Yen, J. Kapellusch, and K. A Grogan. 2017. “Assessing Manual Dexterity: Comparing the Work Ability Rate of Manipulation Test with the Minnesota Manual Dexterity Test.” Journal of Hand Therapy. 1–8.
  • Willms, K., R. Wells, and H. Carnahan. 2009. “Glove Attributes and Their Contribution to Force Decrement and Increased Effort in Power Grip.” Human Factors: The Journal of the Human Factors and Ergonomics Society 51 (6): 797–812.
  • Wimer, B., T. W. McDowell, X. S. Xu, D. E. Welcome, C. Warren, and R. G Dong. 2010. “Effects of Gloves on the Total Grip Strength Applied to Cylindrical Handles.” International Journal of Industrial Ergonomics 40 (5): 574–83.
  • Xu, X. S., D. A. Riley, M. Persson, D. E. Welcome, K. Krajnak, J. Z. Wu, and R. G Dong. 2011. “Evaluation of anti-Vibration Effectiveness of Glove Materials Using an Animal Model.” Bio-Medical Materials and Engineering 21 (4): 193–211.

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