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Comparative finite-element analysis: a single computational modelling method can estimate the mechanical properties of porcine and human vertebrae

机译:比较有限元分析:单一计算建模方法可以估计猪和人类椎骨的机械性质

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摘要

Significant advances in the functional analysis of musculoskeletal systems require the development of modelling techniques with improved focus, accuracy and validity. This need is particularly visible in the fields, such as palaeontology, where unobservable parameters may lie at the heart of the most interesting research questions, and where models and simulations may provide some of the most innovative solutions. Here, we report on the development of a computational modelling method to generate estimates of the mechanical properties of vertebral bone across two living species, using elderly human and juvenile porcine specimens as cases with very different levels of bone volume fraction and mineralization. This study is presented in two parts; part I presents the computational model development and validation, and part II the virtual loading regime and results. This work paves the way for the future estimation of mechanical properties in fossil mammalian bone.
机译:肌肉骨骼系统功能分析的重大进步要求开发建模技术,从而提高焦点,准确性和有效性。这种需求在古生物学等领域尤为明显,在这些领域中,不可观察的参数可能是最有趣的研究问题的核心,而模型和仿真可能会提供一些最具创新性的解决方案。在这里,我们报告了一种计算建模方法的发展,该模型可以使用老年人和少年猪标本作为具有不同水平的骨体积分数和矿化作用的案例,来生成两种生物物种的椎骨力学特性的估计值。这项研究分为两个部分:第一部分介绍了计算模型的开发和验证,第二部分介绍了虚拟加载方式和结果。这项工作为将来估算化石哺乳动物骨骼的机械性能铺平了道路。

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