Regional mechanical properties of human brain tissue for computational models of traumatic brain injury

Finan JD, Sundaresh S, Elkin BS, McKhann II GM, Morrison 3rd B (2017). Regional mechanical properties of human brain tissue for computational models of traumatic brain injury. Acta Biomaterialia, 55:333-339.

To determine viscoelastic shear moduli, stress relaxation indentation tests were performed on samples of human brain tissue resected in the course of epilepsy surgery. Through the use of a 500µm diameter indenter, regional mechanical properties were measured in cortical grey and white matter and subregions of the hippocampus. All regions were highly viscoelastic. Cortical grey matter was significantly more compliant than the white matter or hippocampus which were similar in modulus. Although shear modulus was not correlated with the age of the donor, cortex from male donors was significantly stiffer than from female donors. The presented material properties will help to populate finite element models of the brain as they become more anatomically detailed.

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Regional mechanical properties of human brain tissue for computational models of traumatic brain injury

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