Spinal Cord Boundary Conditions Affect Brain Tissue Strains in Impact Simulations

Author:

Rycman AleksanderORCID,McLachlin Stewart D.,Cronin Duane S.ORCID

Funder

Natural Sciences and Engineering Research Council of Canada

Stellantis Canada

General Motors of Canada

Publisher

Springer Science and Business Media LLC

Subject

Biomedical Engineering

Reference52 articles.

1. Barker, J. B., and D. S. Cronin. Multilevel validation of a male neck finite element model with active musculature. J. Biomech. Eng. 143:1, 2021.

2. Barker, J. B., D. S. Cronin, and R. W. Nightingale. Lower cervical spine motion segment computational model validation: kinematic and kinetic response for quasi-static and dynamic loading. J. Biomech. Eng.139:061009, 2017.

3. Bruneau, D. A., and D. S. Cronin. Brain response of a computational head model for prescribed skull kinematics and simulated football helmet impact boundary conditions. J. Mech. Behav. Biomed. Mater.115:104299, 2021.

4. Bruneau, D. Investigation of Head and Brain Response in Football Helmet Impacts using a Finite Element Model of the Head and Neck with Active Muscle by, 2019.

5. Centers for Disease Control and Prevention. Surveillance Report of Traumatic Brain Injury-related Emergency Department Visits, Hospitalizations, and Deaths-United States, 2014. Centers Dis. Control Prev. U.S. Dep. Heal. Hum. Serv. 24, 2019. www.cdc.gov/TraumaticBrainInjury

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