The Simulation of the Whole-Body Vibration Experienced During Military Land Transit
Author:
Funder
Defence Science and Technology Group
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Biomedical Engineering,Biotechnology
Link
http://link.springer.com/article/10.1007/s41314-018-0015-z/fulltext.html
Reference24 articles.
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2. Blüthner R, Seidel H, Hinz B (2002) Myoelectric response of back muscles to vertical random whole-body vibration with different magnitudes at different postures. J Sound Vib 253:37–56
3. Buckhout R (1964) Effect of whole body vibration on human performance. Human Factors: J Human Factors and Ergonomics Soc 6:157–163
4. Dickey JP, Eger TR, Oliver ML (2009) A systematic approach to simulating field-based occupational whole-body vibration exposure in the lab using a 6df robot. Work 35:15–26
5. Kingma I, Van Dieen JH (2009) Car driving with and without a movable back support: effect on transmission of vibration through the trunk and on its consequences for muscle activation and spinal shrinkage. Ergonomics 52:830–839
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1. High-Frequency Vibration Reduction for Unmanned Ground Vehicles on Unstructured Terrain;Modelling and Simulation for Autonomous Systems;2022
2. The impact of the mechanical whole-body vibration experienced during military land transit on the physical attributes underpinning dismounted combatant physical performance: A randomised controlled trial;Journal of Science and Medicine in Sport;2021-04
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