Relation between risk values based on internal spinal forces and epidemiological outcomes due to long-term whole-body vibrations

  • Project number: F 2257
  • Institution: University of Trieste
  • Status: Completed Project

Description:

There is some scientific evidence for long-term exposure to whole-body vibration being associated with an increased risk of back disorders and early degenerations of the lumbar spine. According to the EC-directive 2002/44/EC, the daily exposure limit value standardised to an eight-hour reference period should be 1.15 m/s² (A(8)-value) or, by the choice of the member state concerned, a vibration dose value of 21 m/s1.75 (VDV). The corresponding daily exposure action values were defined by 0.5 m/s² and 9.1 m/s1.75. In general, the member states adopted the A(8) values when implementing the EC-directive. There are some doubts whether this value adequately reflects the effects of vibration containing multiple shocks. Moreover, the use of the axis of highest vibration for deriving the A(8) value is under critical discussion. At the present, an ISO working group is dealing with the qualification of ISO 2631-5 in order to improve the risk assessment for vibrations containing shocks. In this context, an FE-model developed at BAuA has been examined. It is supposed that exposure to whole-body vibration causes internal forces within the human body including dynamic forces in the spine. Risk values can be calculated based on the vertical internal spinal forces.

Taking into account the research need mentioned above, the association between the risks for spinal impairments (e.g. self reported low back pain, prolapse) obtained from epidemiological studies and calculated risks based on internal spinal forces in the lumbar spine will be investigated.

Publications

An overview of low back pain and occupational exposures to whole-body vibration and mechanical shocks

Publishing year: 2017

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Relationships of low back outcomes to internal spinal load: a prospective cohort study of professional drivers

Publishing year: 2015

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Measures of internal lumbar load in professional drivers - the use of a whole-body finite-element model for the evaluation of adverse health effects of multi-axis vibration

Publishing year: 2015

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A cohort study of sciatic pain and measures of internal spinal load in professional drivers

Publishing year: 2013

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Association between alternative cumulative lifetime vibration doses and low back outcomes

Publishing year: 2017

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A cohort study of sciatic pain and measures of internal spinal load in professional drivers

Publishing year: 2015

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Comparison of different methods for detecting multiple shocks in vibration time histories

Publishing year: 2012

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Berechnung von intraspinalen Kräften und Risikomaßen bei Einwirkung von Ganzkörpervibrationen - Abhängigkeit von Körperhaltung, Körperstatur, Alter, Expositionsdauer und Expositionsmuster am Beispiel von 537 Teilnehmern einer epidemiologischen Studie

Publishing year: 2013

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Further Information

Contact

Unit 3.1 "Prevention of Work-related Diseases"

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Fax: +49 231 9071-2070