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Articles

Evaluation of the biodynamic response of the hand–arm system and hand-tool designs: a brief review

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References

  • Tewari VK, Dewangan KN, Karmakar S. Operator’s fatigue in field operation of hand tractors. Biosyst Eng. 2004;89(1):1–11. doi:10.1016/j.biosystemseng.2004.05.006
  • Bovenzi M. Health effect of mechanical vibration. G Ital Med Lav Ergon. 2005;27(1):58–64.
  • Stoyneva Z, Lyapina M, Tzvetkov D, et al. Current pathophysiological views on vibration-induced Raynaud’s phenomenon. Cardiovas Res. 2003;57(3):615–624. doi:10.1016/S0008-6363(02)00728-9
  • Griffin MJ, Bovenzi M, Nelson CM. Dose–response patterns for vibration induced white finger. Occup and Environ Med. 2003;60(1):16–26. doi:10.1136/oem.60.1.16
  • Hagberg M. Clinical assessment of musculoskeletal disorders in workers exposed to hand–arm vibration. Int Arch Occup Environ Health. 2002;75:97–105. doi:10.1007/s004200100283
  • Kamat SR, Norhidayah H, Halim I, et al. Effect of working posture and hand grip for carpal tunnel syndrome among aerospace workers. Int J Mech Mechatronic Eng. 2014;14(1):1–6.
  • Burström L, Järvholm B, Nilsson T, et al. White fingers, cold environment, and vibration – exposure among Swedish construction workers. Scand J Work, Env Hea. 2010;36(6):509–513. doi:10.5271/sjweh.3072
  • Falkiner S. Diagnosis and treatment of hand–arm vibration syndrome and its relationship to carpal tunnel syndrome. Aust Fam Physician. 2003;32(7):530–534.
  • Bovenzi M. Hand-transmitted vibration. Encyclopedia of occupational health and safety [Internet]; 2011 [cited 2014 Jun 14]. Available from: https://www.iloencyclopaedia.org/part-vi-16255/vibration
  • Palmer K, Griffin MJ, Bendal H. Repeatability and validity of an upper limb and neck discomfort questionnaire; the utility of the standardized Nordic questionnaire. Occup Med. 1999;49(3):171–175. doi:10.1093/occmed/49.3.171
  • Raper RL, Bailey AC, Burt EC, et al. The effects of reduced inflation pressure on soil–tire interface stresses and soil strength. J Terramechanics. 1995;32(1):43–51. doi:10.1016/0022-4898(95)00002-I
  • Vergara M, Sancho JL, Rodriguez P, et al. Hand transmitted vibration in power tools: accomplishment of standards and users perception. Int J Ind Ergon. 2008;38(9–10):652–660. doi:10.1016/j.ergon.2007.10.014
  • Nyantumbu B, Barber CM, Ross M, et al. Hand–arm vibration syndrome in South African gold miners. Occup Med. 2007;57(1):25–29. doi:10.1093/occmed/kql089
  • Goldoftas B. Hand that hurts – repetitive motion injuries on the job. Technology Review. 1991: 43–50.
  • 15 ISO 5349-1. 2001. Mechanical vibration – measurement and evaluation of human exposure to hand-transmitted vibration. Part-1: general requirements. Geneva: International Standard Organization. Standard No. ISO 5349-1:2001.
  • Deros BM, Daruis DDI, Khamis NK, et al. Prevalence of work-related musculoskeletal disorders symptoms among construction workers: a case study in Malaysia. Iran J Public Health. 2014;43(3):53–57.
  • Griffin MJ. Handbook of human vibration. London: Academic Press; 1990.
  • Franz RM, Holden JR, Kielblock AJ..Vibration and its effects on the human operator: a literature survey, Chamber of Mines of South Africa Research Organization, Internal report no. IR433. August 1987
  • Armstrong T. Exposure to forceful exertions and vibration in a foundary. Int J Ind Ergon. 2002;30(3):163–179. doi:10.1016/S0169-8141(02)00098-7
  • Bylund SH, Ahlgren C. Experiences and consequences for women with hand–arm vibration injuries. Work. 2010;35(4):431–439. doi:10.3233/WOR-2010-0980
  • Bylund S, Burstrom L, Knutsson A. A descriptive study of women injured by hand–arm vibration. Ann Occup Hyg. 2002;46(3):299–307.
  • Rossi GL, Tomasini EP. Hand–arm vibration measurement by a laser scanning vibrometer. Measurements. 1995;16:113–124.
  • Liira JP, Shannon HS, Chambers LW, et al. Long-term back problems and physical work exposures in the 1990 Ontario Health Survey. Am J Public Health. 1996;86(3):382–387. doi:10.2105/AJPH.86.3.382
  • Noel B. Raynaud’s phenomenon in workers exposed to vibration. Occup Environ Med. 2001;58:279–280. doi:10.1136/oem.58.4.279
  • Griffin MJ, Bovenzi M. The diagnosis of disorders caused by hand-transmitted vibration: Southampton Workshop. Int Arch Occup Environ Health. 2002;75(1–2):1–5. doi:10.1007/s004200100271
  • Astrom C, Rehn B, Lundstrom R, et al. Hand–arm vibration syndrome (HAVS) and musculoskeletal symptoms in the neck and the upper limbs in professional drivers of terrain vehicles – a cross sectional study. Appl Ergon. 2006;37(6):793–799. doi:10.1016/j.apergo.2005.09.004
  • HSC. Health and safety commission annual report and the health and safety commission. Department of Health and Social Care; London: The Stationery Office HC 98 2005-06.
  • Griffin MJ. Proceedings of the First American Conference on Human Vibration (DHHS/CDC/NIOSH); 2006 Jun 5–7; Morgantown (WV). Cincinnati (OH): NIOSH Publications Dissemination; 2006.
  • ISO 5349-2. 2001. Mechanical vibration – measurement and evaluation of human exposure to hand-transmitted vibration. Part-2: practical guidance for measurement at the workplace. Geneva: International Standard Organization. Standard No. ISO 5349-2:2001.
  • ISO 8041-1:2017 Human response to vibration — measuring instrumentation — Part 1: general purpose vibration meters.
  • European Union. Directive 2002/44/EC of the European Parliament and of the Council of 25 June 2002 on the Minimum Health and Safety Requirements Regarding the Exposure of Workers to the Risks Arising from Physical Agents (Vibration). European Union: Brussels, Belgium. 2002;177:13–19.
  • Acoustical Society of America (ASA). American National Standard guide for the measurement and evaluation of human exposure to vibration transmitted to the hand. Copyright ANSI/ASA S2.70-2006 (R2016). Acoustical Society of America (ASA).
  • Griffin MJ. Foundations of hand-transmitted vibration standards. Nagoya J Med Sci. 1994;57:147–164.
  • Griffin MJ. Measurement,: evaluation, and assessment of occupational exposure to hand-transmitted vibration. Occup Environ Med. 1997;54:73–89. doi:10.1136/oem.54.2.73
  • Wu JZ, Dong RG. Analysis of the contact interactions between fingertips and objects with different surface curvatures. Proc Inst Mech Eng H: J Eng Med. 2005;219:89–103. doi:10.1243/095441105X9327
  • International Organization for Standardization. Mechanical vibration – vibrotactile perception thresholds for the assessment of nerve dysfunction – part 1: methods of measurement at the fingertips. Geneva: International Organization for Standardization; 2001. Standard No. ISO 13091-1:2001.
  • International Organization for Standardization (ISO). Mechanical vibration – vibrotactile perception thresholds for the assessment of nerve dysfunction – part 2: analysis and interpretation of measurements at the fingertips. Geneva: ISO; 2003. Standard No. ISO 13091-2:2003.
  • Bovenzi M, Ronchese F, Mauro M. A longitudinal study of peripheral sensory function in vibration-exposed workers. Int Arch Occup Environ Health. 2011;84:325–334. doi:10.1007/s00420-010-0549-8
  • Rolke R, Magerl W, Campbell KA, et al. Quantitative sensory testing: a comprehensive protocol for clinical trials. Eur J Pain. 2006;10:77–88. doi:10.1016/j.ejpain.2005.02.003
  • Lindsell CJ, Griffin MJ. Normative vibrotactile thresholds measured at five European test centres. Int Arch Occup Environ Health. 2003;76:517–528. doi:10.1007/s00420-003-0444-7
  • Su AT, Maeda S, Fukumoto J, et al. A cross sectional study on hand–arm vibration syndrome among a group of tree fellers in a tropical environment. Ind Health. 2014;52:367–376. doi:10.2486/indhealth.2013-0137
  • Sarok A, Susil J. Occupational hazards in the workplace: a case of an electronic company in Sama Jaya, Kuching, Sarawak, Malaysia. Asian J. Bus. Res. 2012;2(1):1–13. doi:10.14707/ajbr.120001
  • Hiroaki N, Tetsuo K. Dynamical cortical activations associated with saccade execution: a normalized integrative fMRI-MEG study. Adv Biomed Eng. 2012;1:27–35. doi:10.14326/abe.1.27
  • Atsuro S, Naoto K, Junichi F, et al. Development of a novel tool for assessing deformation and hardness of real organs: pressure measuring grasper (PMEG). Adv Biomed Eng. 2016;5:68–75. doi:10.14326/abe.5.68
  • Mihaela CC, George C.. Occupational hygiene – performance cofactor in power engineering, investigation of selected ergonomic factors on work safety.Romania9th International Conference on Industrial Power Engineering.2015.
  • Groenesteijn L, Eikhout SM, Vink P. One set of pliers for more tasks in installation work: the effects on (dis)comfort and productivity. Appl Ergon. 2004;35(5):485–492. doi:10.1016/j.apergo.2004.03.010
  • Yovi EY, Gandaseca S, Adiputra N. Worker’s competency and perception toward safety and health on forest harvesting operation in Indonesian long rotation forest. JMHT. 2012;XVIII(3):198–205.
  • Harih G, Dolsak B. Comparison of subjective comfort ratings between anatomically shaped and cylindrical handles. Appl Ergon. 2014;45(4):943–954. doi:10.1016/j.apergo.2013.11.011
  • Openshaw SD. Predicting and quantifying seated comfort and discomfort using objective and subjective measures [Ph.D. thesis]. University of Iowa; 2011.Lowa City, United States
  • McCallig M, Paddan G, Lente EV, et al. Evaluating worker vibration exposures using self-reported and direct observation estimates of exposure duration. Appl Ergon. 2010;42(1):37–45. doi:10.1016/j.apergo.2010.04.002
  • Yakubu DM, Bakri IM. Evaluation of safety and health performance on construction sites (Kuala Lumpur). Journal of Management and Sustainability. 2013;3(2):100–109. doi:10.5539/jms.v3n2p100
  • Aini NA, Huda BZ. Prevalence of musculoskeletal symptoms and its associated risk factors among bus drivers in a university in Malaysia. Int J Pub Health Clinical Sci. 2015;2(1):34–45.
  • Su TA, Hoe VC, Masilamani R, et al. Hand–arm vibration syndrome among a group of construction workers in Malaysia. Occup Environ Med. 2011;68(1):58–63. doi:10.1136/oem.2009.052373
  • Burstrom L, Lundstrom R, Hagberg M, et al. Comparison of different measures for hand–arm vibration exposure. Saf Sci. 1998;28(1):3–14. doi:10.1016/S0925-7535(97)00059-3
  • Janicak CA. Preventing HAVS in the workplace: identifying workplace risk of hand–arm vibration syndrome. Prof Saf. 2004;49(1):35–40.
  • Griffin MJ, Bovenzi M. The diagnosis of disorders caused by hand-transmitted vibration: Southampton Workshop 2000. Int Arch Occup Environ Health. 2001;75(1):1–5. doi:10.1007/s004200100271
  • Paakkonen R, Sauni R, Uitti J, et al. Evaluation of hand transmitted vibration exposure on basis of a questionnaire. The Journal of the Acoustical Society of America . 2008;123(5):2235–2238.
  • Su TA, Hoe VC. Reliability of a Malay-translated questionnaire for use in a hand–arm vibration syndrome study in Malaysia. Singap Med J. 2008;49(12):1038–1045.
  • Sekaran U. Research methods for business: a skill building approach. 4th ed. John Wiley & Sons, New York; 2003.
  • Shirokov V, Krivtsova I, Bakhtereva H, et al. Qualitative and quantitative characteristics of pain syndrome in hand–arm vibration syndrome. Canadian Acoust. 2011;39(2):24–25.
  • Kuijt-Evers LFM, Bosch T, Huysmans MA, et al. Association between objective and subjective measurements of comfort and discomfort in hand tools. Appl Ergon. 2007;38(5):643–654. doi:10.1016/j.apergo.2006.05.004
  • Mansfield NJ. Human response to vibration.: Taylor & Francis Group . : : : CRC Press ; 2005.
  • Poole K, Mason H. Relationship between self-reported upper limb disability and quantitative tests in hand–arm vibration syndrome. Disabil Rehabil. 2007;29(5):359–366. doi:10.1080/09638280600787138
  • Sauni R, Paakkonen R, Virtema P, et al. Vibration-induced white finger syndrome and carpal tunnel syndrome among Finnish metal workers. Int Arch Occup Environ Health. 2009;82(4):445–453. doi:10.1007/s00420-008-0357-6
  • Cederlund R, Iwarsson S, Lundborg G. Quality of life in Swedish workers exposed to hand–arm vibration. Occup Therapy Int. 2007;14(3):156–169. doi:10.1002/oti.231
  • Palmer KT, D’Angelo S, Syddall H. Dupuytren’s contracture and occupational exposure to hand-transmitted vibration. J Occup Environ Med. 2014;71(4):241–245. doi:10.1136/oemed-2013-101981
  • Katharyn AG, Daniel JH, Libby LS. An analysis of handle designs for reducing manual effort: the influence of grip diameter. Int J lnd Ergon. 1992;10(3):199–206. doi:10.1016/0169-8141(92)90033-V
  • Yong-Ku K, Brian DL. Evaluation of handle diameters and orientations in a maximum torque task. Int J Ind Ergon. 2005;35(12):1073–1084. doi:10.1016/j.ergon.2005.04.009
  • Cochran DJ, Riley MW.. An evaluation of handles shapes and sizes. Proceedings of the Human Factors Society Annual Meeting. 1982;26(5):408–412.
  • Yakou T, Yamamoto K, Koyama M, et al. Sensory evaluation of grip using cylindrical objects. JSME International Journal. 1997;40(4):730–735. doi:10.1299/jsmec.40.730
  • Na Jin S, Thomas JA. Investigation of grip force, normal force, contact area, hand size, and handle size for cylindrical handles. Hum Factors. 2008;50(5):734–744. doi:10.1518/001872008X354192
  • Sancho-Bru JL, Giurintano DJ, Pérez-González A, et al. Optimum yool handle diameter for a cylinder grip. J hand Ther. 2003;16(4):337–342. doi:10.1197/S0894-1130(03)00160-1
  • Kong YK, Lowe BD.. Optimizing handle size based on normalized hand size in a maximum gripping task.August 24-29Seoul, Korea: Ergonomics Society of Korea, CD-ROM. In: Ergonomics in the Digital Age: Proceedings of the XVth Triennial Congress of the International Ergonomics Association and the 7th Joint Conference of the Ergonomics Society of Korea/Japan Ergonomics Society..2003.
  • Garrett JW. The adult human hand: some anthropometric and biomechanical considerations. Hum Factors. 1971;13(2):117–131. doi:10.1177/001872087101300204
  • Eastman Kodak Company. Ergonomic design for people at work. Vol. I. Belment (CA): Lifetime Learning Publications; 1983.
  • Konz S. Work design: industrial ergonomics. 3rd ed. Scottsdale (AZ): Publishing Horizons; 1990. p. 237–258.
  • Johnson SL. Ergonomic hand tool design. Hand Clinics. 1993;9:299–311. doi:10.1016/S0749-0712(21)00970-7
  • Magill R, Konz S. An evaluation of seven industrial screwdrivers. In: Karwowski W, editor. Trends in ergonomics/human factors III. U North Holland, Netherlands: Elsevier Science; 1986. p. 597–604.
  • Christopher JG, Matthew BP. Optimization of product dimensions for discrete sizing applied to a tool handle. Int J Ind Ergon. 2012;42(1):56–64. doi:10.1016/j.ergon.2011.08.005
  • Christopher JG, Matthew BP.. Optimization of Tool Handle Shape for a Target User Population.August 30–September 2.Parts A and B. San Diego, California, USA.Proceedings of the ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Volume 5: 35th Design Automation Conference.2009.
  • Jain A R Tony B, Alphin MS. Assessment of ergonomically designed handle shapes for low-frequency vibration responses. Proc Inst Mech Engineering Pt L J Mater Des Appl. 2019;233(8):1564–1573.
  • Jain A R Tony B, Alphin MS. Influence of handle shape and size to reduce the hand–arm vibration discomfort. Work. 2019;63(3):415–426. doi:10.3233/WOR-192948
  • Ramon Sancibrian, Marı´a C, Gutierrez-Diez, et al. Design and evaluation of a new ergonomic handle for instruments in minimally invasive surgery. J Surg Res. 2014;188(1):88–99. doi:10.1016/j.jss.2013.12.021
  • Yong-Ku K, Andris F. Evaluation of meat-hook handle shapes. Int J Ind Ergon. 2003;32(1):13–23. doi:10.1016/S0169-8141(03)00022-2
  • Jagvir S, Abid AK. Effect of coating over the handle of a drill machine on vibration transmissibility. Appl Ergon. 2014;45(2):239–246. doi:10.1016/j.apergo.2013.04.007
  • Ko Ying H, Ooi Lu E, Zaidi Mohd R. The design and development of suspended handles for reducing hand–arm vibration in petrol driven grass trimmer. Int J Ind Ergon. 2011;41(5):459–470. doi:10.1016/j.ergon.2011.04.004
  • Oddo R, Loyau T, Boileau PE, et al. Design of a suspended handle to attenuate rockdrill hand–arm vibration: model development and validation. J Sound V. 2004;275(3-5):623–640.
  • Hui D, Peter L, Alan B, et al. The effect of tool handle shape on hand muscle load and pinch force in a simulated dental scaling task. Appl Ergon. 2007;38(5):525–531. doi:10.1016/j.apergo.2006.09.002
  • Seo NJ, Armstrong TJ. Investigation of grip force, normal force, contact area, and hand size for cylindrical handles. Hum Factors. 2008;50(5):734–744. doi:10.1518/001872008X354192
  • Iman D, Moein N, Mohammad A, et al. The effects of tool handle shape on hand performance, usability and discomfort using masons’ trowels. Int J Ind Ergon. 2015;45:13–20. doi:10.1016/j.ergon.2014.10.006
  • Yong-Ku K, Brian DL, Soo-Jin L, et al. Evaluation of handle shapes for screw driving. Appl Ergon. 2008;39(2):191–198. doi:10.1016/j.apergo.2007.05.003
  • Harih G, Dolsak B. Tool-handle design based on a digital human hand model. Int J Ind Ergon. 2013;43(4):288–295. doi:10.1016/j.ergon.2013.05.002
  • Rie K, Iwanori M, Tomokazu M, et al. Ergonomic assessment of a laparoscopic stapler. Adv Biomed Eng. 2013;2:11–16. doi:10.14326/abe.2.11
  • Harish G. Decision support system for generating ergonomic hand-tools. Int J Simul Model. 2014;13(1):5–15. doi:10.2507/IJSIMM13(1)1.234
  • Yoshiyuki A, Takeshi ABE, Hideki OKA, et al. A versatile platform for multilevel modeling of physiological systems: SBML–PHML hybrid modeling and simulation. Adv Biomed Eng. 2014;3:50–58. doi:10.14326/abe.3.50
  • Harih G, Dolšak B. Recommendations for tool-handle material choice based on finite element analysis. Appl Ergon. 2014;45(3):577–585. doi:10.1016/j.apergo.2013.07.014
  • Wu JZ, Dong RG, Rakheja S, et al. Simulation of mechanical responses of fingertip to dynamic loading. Med Eng Phy. 2002;24(4):253–264. doi:10.1016/S1350-4533(02)00018-8
  • Wu JZ, Welcome DE, Dong RG. Three-dimensional finite element simulations of the mechanical response of the fingertip to static and dynamic compressions. Comput Methods Biomech Biomed Engin. 2006;9(1):55–63. doi:10.1080/10255840600603641
  • Wu JZ, Welcome DE, Krajnak K, et al. Finite element analysis of the penetrations of shear and normal vibrations into the soft tissues in a fingertip. Med Eng Phy. 2007;29(6):718–727. doi:10.1016/j.medengphy.2006.07.005
  • Wu JZ, Cutlip RG, Welcome D, et al. Estimation of the viscous properties of skin and subcutaneous tissue in uniaxial stress relaxation tests. Biomed Mater Eng. 2006;16(1):53–66.
  • Rossi J, de Monsabert BG, Berton E, et al. Does handle shape influence prehensile capabilities and muscle coordination. Comput Methods Biomech Biomed Engin. 2014;17(Suppl 1):172–173. doi:10.1080/10255842.2014.931657
  • Chamoret D, Roth S, Feng ZQ, et al. A novel approach to modelling and simulating the contact behaviour between a human hand model and a deformable object. Comput Methods Biomech Biomed Engin. 2013;16(2):130–140. doi:10.1080/10255842.2011.608662
  • Pawluk DT, Howe RD. Dynamic contact of the human finger pad against a flat surface. J Biomech Eng. 1999;121(6):605–611. doi:10.1115/1.2800860
  • Wu JZ, Dong RG, Smutz WP, et al. Dynamic interaction between a finger pad and a flat surface: experiments and analysis. Med Eng Phy. 2003;25(5):397–406. doi:10.1016/S1350-4533(03)00035-3
  • Brook N, Mizrahi J, Shoham M, et al. A biomechanical model of index finger dynamics. Med Eng Phy. 1995;17(1):54–63. doi:10.1016/1350-4533(95)90378-O
  • Valero-Cuevas FJ, Zajac FE, Burgar CG. Large index-fingertip forces are produced by subject-independent patterns of muscle excitation. J Biomech. 1988;31(8):693–703. doi:10.1016/S0021-9290(98)00082-7
  • Freund J, Toivonen R, Takala EP. Grip forces of the fingertips. Clin Biomech. 2002;17(7):515–520. doi:10.1016/S0268-0033(02)00043-8
  • Sancho-Bru JL, Perez-Gonzalez A, Vergara-Monedero M, et al. A 3-D dynamic model of human finger for studying free movements. J Biomech. 2001;34(1):1491–1500. doi:10.1016/S0021-9290(01)00106-3
  • Pejovic-Milic BJ, Gyorffy J, et al. Ultrasound measurements of overlying soft tissue thickness at four skeletal sites suitable for in vivo X-ray fluorescence. Med Eng Phy. 2002;29(11):2687–2691. doi:10.1118/1.1513569
  • Yuji I, Nur Elina BZ, Kenji S. Fundamental analysis of electromagnetic induction effects on human biological tissues: an analysis of four human models at 0.9 MHz frequency. Adv Biomed Engin. 2017;6:102–109. doi:10.14326/abe.6.102
  • Jain A R Tony B, Alphin MS. Finite element analysis to assess the biomechanical behavior of a finger model gripping handles with different diameters. Biomed Hum Kinet. 2019;11:69–79. doi:10.2478/bhk-2019-0009
  • Wu JZ, Dong RG, Warren CM, et al. Analysis of the effects of surface stiffness on the contact interaction between a finger and a cylindrical handle using a three-dimensional hybrid model. Med Eng Phy. 2014;36(7):831–841. doi:10.1016/j.medengphy.2014.03.007

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