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Journal Article

Citation

Diaw BM, Willinger R, Kang HS. Proc. IRCOBI 1997; 25: 461-463.

Copyright

(Copyright © 1997, International Research Council on Biomechanics of Injury)

DOI

unavailable

PMID

unavailable

Abstract

The aim of the work presented in this poster is to set up a numerical model in order to simulate skull fracture, and to analyze the effects of the material discontinuity induced by this non-linearity on intracranial stress field. Mechanical parameters of cranial bone were found in the bibliography for the finite element modeling (FEM) of skull fracture. A failure criterion was validated with cranial bone samples and is applied to a new three-dimensional (3D) anatomic skull model. The results comply well with the experimental bone response found in the bibliography. Finally, a simple spherical human head model was used to analyze the effects of skull fracture on head response in case of shock.

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