首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >The development of lower limb musculoskeletal models with clinical relevance is dependent upon the fidelity of the mathematical description of the lower limb. Part 1: equations of motion
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The development of lower limb musculoskeletal models with clinical relevance is dependent upon the fidelity of the mathematical description of the lower limb. Part 1: equations of motion

机译:具有临床意义的下肢肌肉骨骼模型的发展取决于下肢数学描述的准确性。第1部分:运动方程

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Contemporary musculoskeletal modelling research is based upon the assumption that such models will evolve into clinical tools that can be used to guide therapeutic interventions. However, there are a number of questions that must be addressed before this becomes a reality. At its heart, musculoskeletal modelling is a process of formulating and then solving the equations of motion that describe the movement of body segments. Both of these steps are challenging. This article argues that traditional approaches to musculoskeletal modelling have been heavily influenced by the need to simplify this process (and in particular the solution process), and that this has to some degree resulted in approaches that are contrary to the principles of classical mechanics. It is suggested that future work is required to understand how these simplifications affect the outputs of musculoskeletal modelling studies. Equally, to increase their clinical relevance, the models of the future should adhere more closely to the classical mechanics on which they are based.
机译:当代的肌肉骨骼建模研究是基于这样的假设,即这种模型将演变为可用于指导治疗干预的临床工具。但是,在这成为现实之前,必须解决许多问题。从本质上讲,肌肉骨骼建模是制定然后求解描述身体各部分运动的运动方程的过程。这两个步骤都具有挑战性。本文认为,简化骨骼肌肉建模的传统方法受到简化此过程(特别是求解过程)的需求的影响,并且在某种程度上导致了与经典力学原理相反的方法。建议需要做进一步的工作,以了解这些简化如何影响肌肉骨骼模型研究的结果。同样,为了增加它们的临床相关性,未来的模型应该更紧密地遵循它们所基于的经典力学。

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