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Effect of structural distortions on articular cartilage permeability under large deformations

机译:结构扭曲对大变形下关节软骨渗透性的影响

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摘要

The permeability of articular cartilage has a key role in load support and lubrication in diarthrodial joints. The microstructural rearrangement and consequent alteration in permeability caused by the large deformations undergone by cartilage have been previously modelled with a multi-scale approach. At the microscopic scale, the tissue is regarded as a homogeneous fluid-filled proteoglycan matrix reinforced by collagen fibres. A material point is described by a representative element of volume (REV), comprising a collagen fibre surrounded by a jacket of fluid-saturated proteoglycan matrix. At the macroscopic scale, the statistical orientation of the fibres is accounted for via averaging of the REV over all possible directions. The previous models accounted for volumetric deformation and fibre reorientation, but did not consider the cross-sectional distortion of the REV, which changes the widths of the fluid channels in different directions. We account for REV cross-sectional distortion and demonstrate its effects by simulating confined compression tests for the superficial, middle and deep zones of articular cartilage. The proposed model captures published experimental results that were not reproduced correctly by the previous models, and shows that each factor (volumetric deformation, fibre reorientation, REV cross-sectional distortion) can be dominant, depending on fibre orientation and amount of compression, implying that all three factors should be accounted for when modelling cartilage permeability.
机译:关节软骨的渗透性在荷载接头中的负载支持和润滑中具有关键作用。通过软骨发生的大变形引起的微观结构重排和随之改变已经以多尺度方法建模。在微观尺度下,组织被认为是由胶原纤维增强的均匀流体填充的蛋白多糖基质。物质点由体积(Rev)的代表性要素描述,包括由流体饱和蛋白多糖基质的夹套包围的胶原纤维。在宏观刻度下,纤维的统计取向被概述通过对所有可能的方向的转速的平均来实现。以前的模型占体积变形和光纤重新定位,但没有考虑REV的横截面失真,其改变了不同方向的流体通道的宽度。我们通过模拟关节软骨的浅表,中部和深区域的限制压缩试验来展示其效果。所提出的模型捕获上一个模型未正确再现的公开实验结果,并表明每个因子(体积变形,光纤重新定向,转速横截面失真)可以取决于纤维取向和压缩量,这意味着在建模软骨渗透率时,应考虑所有三种因素。

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