首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Development and numerical validation of a finite element model of the muscle standardized femur
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Development and numerical validation of a finite element model of the muscle standardized femur

机译:肌肉标准化股骨有限元模型的开发和数值验证

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摘要

The human femur is one of the parts of the musculo-skeletal system most frequently analysed by means of the finite element (FE) method. Most FE studies of the human femur are based on computed tomography data sets of a particular femur. Since the geometry of the chosen sample anatomy influences the computed results, direct comparison across various models is often difficult or impossible. The aim of the present work was to develop and validate a novel three-dimensional FE model of the human femur based on the muscle standardized femur ( MuscleSF) geometry. In the new MuscleSF FE model the femoral attachment of each muscle was meshed separately on the external bone surface. The model was tested under simple load configurations and the results showed good agreement with the converged solution of a former study. In the future, using the validated MuscleSF FE model for numerical studies of the human femur will provide the following benefits: (a) the numerical accuracy of the model is known; (b) muscle attachment areas are incorporated in the model therefore physiological loading conditions can be easily defined; (c) analyses of the femur under physiological load cases will be replicable; (d) results based on different load configurations could be compared across various studies.
机译:人类股骨是肌肉骨骼系统最常通过有限元(FE)方法进行分析的部分之一。人类股骨的大多数有限元研究都是基于特定股骨的计算机断层扫描数据集。由于所选样本解剖结构的几何形状会影响计算结果,因此在各种模型之间进行直接比较通常是困难或不可能的。本工作的目的是基于肌肉标准化股骨(MuscleSF)几何结构开发和验证新型的人类股骨三维有限元模型。在新的MuscleSF FE模型中,每条肌肉的股骨附着物分别在外部骨表面上啮合。该模型在简单的载荷配置下进行了测试,结果表明与先前研究的收敛解吻合良好。将来,使用经过验证的MuscleSF FE模型进行人股骨的数值研究将带来以下好处:(a)该模型的数值准确性是已知的; (b)将肌肉附着区域纳入模型,因此可以轻松定义生理负荷条件; (c)在生理负荷情况下对股骨的分析将是可重复的; (d)可以在各种研究中比较基于不同负载配置的结果。

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