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The combined impact of tissue heterogeneity and fixed charge for models of cartilage: the one-dimensional biphasic swelling model revisited

机译:组织异质性和固定电荷对软骨模型的综合影响:重新审视一维双相肿胀模型

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摘要

Articular cartilage is a complex, anisotropic, stratified tissue with remarkable resilience and mechanical properties. It has been subject to extensive modelling as a multiphase medium, with many recent studies examining the impact of increasing detail in the representation of this tissue's fine scale structure. However, further investigation of simple models with minimal constitutive relations can nonetheless inform our understanding at the foundations of soft tissue simulation. Here, we focus on the impact of heterogeneity with regard to the volume fractions of solid and fluid within the cartilage. Once swelling pressure due to cartilage fixed charge is also present, we demonstrate that the multiphase modelling framework is substantially more complicated, and thus investigate this complexity, especially in the simple setting of a confined compression experiment. Our findings highlight the importance of locally, and thus heterogeneously, approaching pore compaction for load bearing in cartilage models, while emphasising that such effects can be represented by simple constitutive relations. In addition, simulation predictions are observed for the sensitivity of stress and displacement in the cartilage to variations in the initial state of the cartilage and thus the details of experimental protocol, once the tissue is heterogeneous. These findings are for the simplest models given only heterogeneity in volume fractions and swelling pressure, further emphasising that the complex behaviours associated with the interaction of volume fraction heterogeneity and swelling pressure are likely to persist for simulations of cartilage representations with more fine-grained structural detail of the tissue.
机译:关节软骨是一种复杂,各向异性的分层组织,具有显着的弹性和机械性能。它一直受到多相培养基的广泛建模,许多最近的研究检查了越来越多的细节在这种组织的细尺结构表示中的影响。然而,进一步调查具有最小组成关系的简单模型可以让我们在软组织模拟的基础上通知我们的理解。在这里,我们专注于异质性对软骨内固体和液体体积分数的影响。一旦存在软骨固定电荷导致的膨胀压力,我们证明了多相建模框架基本上更复杂,因此研究了这种复杂性,特别是在狭窄压缩实验的简单设置中。我们的研究结果突出了本地的重要性,因此异构地,接近软骨型号的负载轴承的孔压缩,同时强调这种效应可以通过简单的本构关系来表示。此外,对于软骨中的应力和位移的敏感性,观察到模拟预测,以便组织是非均相的实验方案的细节。这些发现对于仅在体积分数和膨胀压力中仅提供异质性的最简单模型,进一步强调与体积分数异质性和溶胀压力相互作用相关的复杂行为可能持续存在于具有更细粒度的结构细节的软骨表示的模拟组织。

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