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Finite element analysis of biological soft tissue surrounded by a deformable membrane that controls transmembrane flow

机译:控制变形膜流动的可变形膜包围的生物软组织的有限元分析

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摘要

BackgroundMany biological soft tissues are hydrated porous hyperelastic materials, which consist of a complex solid skeleton with fine voids and fluid filling these voids. Mechanical interactions between the solid and the fluid in hydrated porous tissues have been analyzed by finite element methods (FEMs) in which the mixture theory was introduced in various ways. Although most of the tissues are surrounded by deformable membranes that control transmembrane flows, the boundaries of the tissues have been treated as rigid and/or freely permeable in these studies. The purpose of this study was to develop a method for the analysis of hydrated porous hyperelastic tissues surrounded by deformable membranes that control transmembrane flows.
机译:背景技术许多生物软组织是水合的多孔超弹性材料,其由复杂的固体骨架组成,具有细小的空隙,并且流体填充这些空隙。已通过有限元方法(FEM)分析了水合多孔组织中固体与流体之间的机械相互作用,其中以多种方式引入了混合理论。尽管大多数组织被控制跨膜流动的可变形膜围绕,但在这些研究中,组织的边界已被视为刚性和/或自由渗透的。这项研究的目的是开发一种分析可变形膜包围的水化多孔超弹性组织的方法,该膜控制着跨膜的流动。

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