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The influence of size clearance cartilage properties thickness and hemiarthroplasty on the contact mechanics of the hip joint with biphasic layers

机译:大小间隙软骨性质厚度和半髋置换对双相髋关节接触力学的影响

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摘要

Computational models of the natural hip joint are needed to examine and optimise tissue sparing interventions where the natural cartilage remains part of the bearing surfaces. Although the importance of interstitial fluid pressurisation in the performance of cartilage has long been recognized, few studies have investigated the time dependent interstitial fluid pressurisation in a three dimensional natural hip joint model. The primary aim of this study was to develop a finite element model of the natural hip incorporating the biphasic cartilage layers that was capable of simulating the joint response over a prolonged physiological loading period. An initial set of sensitivity studies were also undertaken to investigate the influence of hip size, clearance, cartilage properties, thickness and hemiarthroplasty on the contact mechanics of the joint. The contact stress, contact area, fluid pressure and fluid support ratio were calculated and cross-compared between models with different parameters to evaluate their influence. It was found that the model predictions for the period soon after loading were sensitive to the hip size, clearance, cartilage aggregate modulus, thickness and hemiarthroplasty, while the time dependent behaviour over 3000 s was influenced by the hip clearance and cartilage aggregate modulus, permeability, thickness and hemiarthroplasty. The modelling methods developed in this study provide a basic platform for biphasic simulation of the whole hip joint onto which more sophisticated material models or other input parameters could be added in the future.
机译:需要自然髋关节的计算模型来检查和优化组织保留干预措施,其中自然软骨仍然是承重表面的一部分。尽管早已认识到组织液加压在软骨性能中的重要性,但很少有研究在三维自然髋关节模型中研究时间依赖性组织液加压。这项研究的主要目的是开发结合了双相软骨层的自然髋关节的有限元模型,该模型能够模拟延长的生理负荷期间的关节反应。最初还进行了一组敏感性研究,以研究髋关节的大小,间隙,软骨特性,厚度和半髋关节置换术对关节接触力学的影响。计算了接触应力,接触面积,流体压力和流体支持率,并在具有不同参数的模型之间进行了交叉比较,以评估它们的影响。研究发现,负荷后不久的模型预测对髋关节的大小,间隙,软骨聚集模量,厚度和半髋置换敏感,而超过3000 s的时间依赖性行为受髋关节间隙和软骨聚集模量,通透性的影响,厚度和半髋置换。本研究开发的建模方法为整个髋关节的双相仿真提供了基础平台,将来可以在其上添加更复杂的材料模型或其他输入参数。

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