ATTI 82° CONGRESSO NAZIONALE SIML
18 February 2025
Vol. 41 No. 4 (2019)

[New international criteria for vascular risk assessment and staging of hand-arm vibration syndrome]

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Recently, a supplementary methodology to improve the assessment of occupational exposures to hand-transmitted vibration (HTV) and a revision of the clinical staging of the hand-arm vibration syndrome (HAVS) have been proposed. The Technical Report ISO/TR 18570:2017 provides guidance on a supplementary method to that defined in ISO 5349-1:2001 for measuring and reporting HTV exposures; the method provides an improved assessment methodology for evaluating vascular hand-arm vibration risks (vibration induced white finger). On using a Delphi procedure, an international panel of experts has achieved consensus to develop an updated staging system for the vascular and neurological disorders of the HAVS, previously defined in the Stockholm Workshop Scale (1986); a new classification has been proposed with three stages for vibration related vascular and neurological effects. This paper provides details on the new international criteria for the assessment of vibration induced vascular risk and for the clinical staging of the vascular and neurological components of the HAVS.

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Citations

1) International Standardization Organization. Mechanical vibrationMeasurement and evaluation of human exposure to hand transmitted vibration - Supplementary method for assessing risk of vascular disorders. ISO/TR 18570. ISO, Geneva, 2017.
2) International Standardization Organization. Mechanical vibrationMeasurement and evaluation of human exposure to hand transmitted vibration - Part 1: General requirements. ISO 5349-1. ISO, Geneva, 2001.
3) Poole CJM, Bovenzi M, Nilsson T, et al. International consensus criteria for diagnosing and staging hand-arm vibration syndrome. Int Arch Occup Environ Health 2019; 92: 117-27. DOI: https://doi.org/10.1007/s00420-018-1359-7
4) Gemne G, Pyykko I, Taylor W, et al. The Stockholm Workshop Scale for the classification of cold-induced Raynaud's phenomenon in the hand-arm vibration syndrome (revision of the Taylor-Pelmear scale). Scand J Work Environ Health 1987; 13: 275-8. DOI: https://doi.org/10.5271/sjweh.2038
5) Brammer AJ, Taylor W, Lundborg G. Sensorineural stages of the hand-arm vibration syndrome. Scand J Work Environ Health 1987; 13: 279-83. DOI: https://doi.org/10.5271/sjweh.2050
6) Bovenzi M. Epidemiological evidence for new frequency weightings of hand-transmitted vibration. Ind Health 2012; 50: 377-87. DOI: https://doi.org/10.2486/indhealth.MS1382
7) Bovenzi M, Pinto I, Picciolo F. Risk assessment of vascular disorders by a supplementary hand-arm vascular weighting of handtransmitted vibration. Int Arch Occup Environ Health 2019; 92: 129-39. DOI: https://doi.org/10.1007/s00420-018-1363-y
8) Bovenzi M, Prodi A, Mauro M. Relationships of neurosensory disorders and reduced work ability to alternative frequency weightings of hand-transmitted vibration. Scand J Work Environ Health 2015; 41: 247-58. DOI: https://doi.org/10.5271/sjweh.3490
9) Bovenzi M, Prodi A, Mauro M. A longitudinal study of neck and upper limb musculoskeletal disorders and alternative measures of vibration exposure. Int Arch Occup Environ Health 2016; 89: 923-33. 10) Griffin MJ. Handbook of human vibration. Academic Press, London, 1990.

How to Cite



[New international criteria for vascular risk assessment and staging of hand-arm vibration syndrome]. (2025). Giornale Italiano Di Medicina Del Lavoro Ed Ergonomia, 41(4), 268-273. https://doi.org/10.4081/gimle.505