4.5 Article

A patient-specific, finite element model for noncommunicating hydrocephalus capable of large deformation

Journal

JOURNAL OF BIOMECHANICS
Volume 46, Issue 8, Pages 1447-1453

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jbiomech.2013.03.008

Keywords

Noncommunicating hydrocephalus; Nonlinear biphasic model; Obstructive hydrocephalus

Funding

  1. Lafayette College

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A biphasic model for noncommunicating hydrocephalus in patient-specific geometry is proposed. The model can take into account the nonlinear behavior of brain tissue under large deformation, the nonlinear variation of hydraulic conductivity with deformation, and contact with a rigid, impermeable skull using a recently developed algorithm. The model was capable of achieving over a 700 percent ventricular enlargement, which is much greater than in previous studies, primarily due to the use of an anatomically realistic skull recreated from magnetic resonance imaging rather than an artificial skull created by offsetting the outer surface of the cerebrum. The choice of softening or stiffening behavior of brain tissue, both having been demonstrated in previous experimental studies, was found to have a significant effect on the volume and shape of the deformed ventricle, and the consideration of the variation of the hydraulic conductivity with deformation had a modest effect on the deformed ventricle. The model predicts that noncommunicating hydrocephalus occurs for ventricular fluid pressure on the order of 1300 Pa. (C) 2013 Elsevier Ltd. All rights reserved.

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