Dynamic response of a fluid-filled spheroidal shell—An improved model for studying head injury

Author:

Talhouni O.,DiMaggio F.

Publisher

Elsevier BV

Subject

Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics

Reference18 articles.

1. The effect of an impact on a spherical liquid mass;Anzelius;Acta. path. microbiol. scand. Suppl.,1943

2. Transient response of submerged spheroidal shells;Bedrosian;Int. J. Solids Struct.,1972

3. An analytical investigation of the cavitation hypothesis of brain damage;Benedict;J. Basic Engng,1970

4. The asymmetric response of a fluid-filled spherical shell—a mathematical simulation of a glancing blow to the head;Chan,1973

5. The axisymmetric response of a fluid-filled spherical shell to a local radial impulse—a model for head injury;Engin;J. Biomechanics,1969

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1. Physical mechanisms involved in the genesis of temporomandibular joint sounds;Journal of Oral Rehabilitation;1998-09

2. Dynamic characteristics of the human skull-brain system;Mathematical and Computer Modelling;1998-01

3. Application of linear biphasic theory to finite element analysis of head impulse loading;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;1997-02-01

4. Biomechanics of Impact Traumatic Brain Injury;Crashworthiness of Transportation Systems: Structural Impact and Occupant Protection;1997

5. Dynamic Response of the Human Head to Impact by Three-Dimensional Finite Element Analysis;Journal of Biomechanical Engineering;1994-02-01

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