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首页> 外文期刊>Biomechanics and modeling in mechanobiology >How changes in interconnectivity affect the bulk properties of articular cartilage: a fibre network study
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How changes in interconnectivity affect the bulk properties of articular cartilage: a fibre network study

机译:互连性变化如何影响关节软骨的散装性质:光纤网络研究

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The remarkable compressive strength of articular cartilage arises from the mechanical interactions between the tension-resisting collagen fibrils and swelling proteoglycan proteins within the tissue. These interactions are facilitated by a significant level of interconnectivity between neighbouring collagen fibrils within the extracellular matrix. A reduction in interconnectivity is suspected to occur during the early stages of osteoarthritic degeneration. However, the relative contribution of these interconnections towards the bulk mechanical properties of articular cartilage has remained an open question. In this study, we present a simple 2D fibre network model which explicitly represents the microstructure of articular cartilage as collection of discrete nodes and linear springs. The transverse stiffness and swelling properties of this fibre network are studied, and a semi-analytic relationship which relates these two macroscopic properties via microscopic interconnectivity is derived. By comparing this derived expression to previously published experimental data, we show that although a reduction in network interconnectivity accounts for some of the observed changes in the mechanical properties of articular cartilage as degeneration occurs, a decrease in matrix interconnectivity alone do not provide a full account of this process.
机译:关节软骨的显着抗压强度是从抗粘附胶原型原纤维和组织内的溶胀蛋白多糖蛋白之间的机械相互作用。通过细胞外基质内的相邻胶原型原纤维之间的显着水平互连促进这些相互作用。怀疑在骨关节炎退化的早期阶段发生互连性的降低。然而,这些互连对关节软骨的块状机械性能的相对贡献仍然是一个打开的问题。在这项研究中,我们提出了一种简单的2D光纤网络模型,其明确地表示关节软骨的微观结构作为离散节点和线性弹簧的集合。研究了该纤维网的横向刚度和溶胀性质,并通过微观互连涉及这两个宏观性质的半分析关系。通过将该衍生的表达与先前公布的实验数据进行比较,虽然网络互连性降低了关节软骨的机械性质的一些观察到的变化,但是仅发生矩阵互连的减少不提供完整的帐户这个过程。

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