A study of the nerve root damage in whiplash injury occurrence mechanisms using human head-neck finite element model

Author:

HASEGAWA Junji1,TAMURA Atsutaka2,KUBOTA Naoyuki1

Affiliation:

1. Department of Intelligent Mechanical Systems, Graduate School of System Design, Tokyo Metropolitan University

2. Department of Mechanical and Aerospace Engineering, Graduate School of Engineering, Tottori University

Publisher

Japan Society of Mechanical Engineers

Reference31 articles.

1. Beel, J. A., Stodieck, L. S. and Luttges, M. W., Structural properties of spinal nerve roots: Biomechanics, Experimental Neurology, Vol.91 (1986), pp.30-40.

2. Boström, O., Svensson, M. Y., Aldman, B., Hansson, H. A., Häland1, Y., Lövsund, P., Seeman, T., Suneson, A., Säljö, A. and Örtengren, T., A new neck injury criterion candidate-based on injury findings in the cervical spinal ganglia after experimental neck extension trauma, IRCOBI Conference Proceedings (1996), IRC-96-09.

3. Carlsson, A., Initial studies of dynamic responses of female and male volunteers in rear impact tests, Thesis 2010:01, Department of Applied Mechanics, Chalmers University of Technology (2010), ISSN 1652-8565.

4. Croft, A. C., Herring, P., Freeman, M. D. and Haneline, M. T., The neck injury criterion: future considerations, Accident Analysis and Prevention, Vol.34 (2002), pp.247-255.

5. Devor, M., and Seltzer, Z., (Wall, P. D. and Melzack, R. eds.), Pathophysiology of damaged nerves in relation to chronic pain, Textbook of pain, (1999), Churchill Livingstone, pp.129-164.

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