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The Correspondence Between Equilibrium Biphasic and Triphasic Material Properties in Mixture Models of Articular Cartilage

机译:关节软骨混合模型中平衡两相和三相材料特性的对应关系

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摘要

Mixture models have been successfully used to describe the response of articular cartilage to various loading conditions. Mow and co-workers [1980, J. Biomech. Eng. 102, 73–84] formulated a mixture model of articular cartilage where the collagen-proteoglycan matrix is modeled as an intrinsically incompressible porous-permeable solid matrix, and the interstitial fluid is modeled as an incompressible fluid. Lai and co-workers [1991, J. Biomech. Eng. 113, 245–258] proposed a triphasic model of articular cartilage as an extension of their biphasic theory, where negatively charged proteoglycans are modeled to be fixed to the solid matrix, and monovalent ions in the interstitial fluid are modeled as additional fluid phases. Since both models co-exist in the cartilage literature, it is useful to show how the measured properties of articular cartilage (the confined and unconfined compressive and tensile moduli, the compressive and tensile Poisson’s ratios, and the shear modulus) relate to both theories. In this study, closed-form expressions are presented that relate biphasic and triphasic material properties in tension, compression and shear. These expressions are then compared to experimental findings in the literature to provide greater insight into the measured properties of articular cartilage as a function of bathing solutions salt concentrations and proteoglycan fixed-charge density.
机译:混合物模型已成功用于描述关节软骨对各种负荷条件的反应。割草及其同事[1980年,J。Biomech。 。 [102,73-84]提出了一种关节软骨的混合模型,其中胶原蛋白聚糖基质被建模为本质上不可压缩的多孔渗透性固体基质,而组织间液则被建模为不可压缩的流体。 Lai和同事[1991,J. Biomech。 。 113,245–258]提出了一种关节软骨的三相模型作为其双相理论的扩展,其中带负电荷的蛋白聚糖被建模为固定在固体基质上,而组织液中的一价离子被建模为附加的流体相。由于这两种模型共存于软骨文献中,因此有必要显示关节软骨的测量特性(受限和无约束的压缩模量和拉伸模量,压缩泊松比和拉伸泊松比以及剪切模量)与这两种理论之间的关系。在这项研究中,提出了封闭形式的表达式,该表达式与拉伸,压缩和剪切中的双相和三相材料特性相关。然后将这些表达与文献中的实验结果进行比较,以更深入地了解作为软骨溶液盐浓度和蛋白聚糖固定电荷密度的函数的关节软骨的测量特性。

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