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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Algorithms for exact multi-object muscle wrapping and application to the deltoid muscle wrapping around the humerus
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Algorithms for exact multi-object muscle wrapping and application to the deltoid muscle wrapping around the humerus

机译:精确多目标肌肉包裹的算法及其在肱骨三角肌包裹中的应用

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摘要

Lines of action of muscle forces imply the function and performance of muscles acting around joints. It is not always possible to determine muscle force lines of action in vivo, and so computational techniques are often used to predict them. It is common to model a muscle as a taut elastic string that follows the shortest geodesic path between attachments over the wrapping geometry. A number of studies have been concerned with wrapping paths over single wrapping objects, and those that have considered more objects have applied the single-object solutions with iterative approaches to the search for a solution. This study presents a more efficient methodology for finding the exact solutions to a certain class of wrapping problems in which the path is constrained by multiple surfaces. It also introduces a more general wrapping technique based on the idea of energy minimization, which has been successfully validated against the exact solution. These methods are applied to the case of an element of the deltoid wrapping around the humerus modelled as a composite sphere-cylinder. Comparison of results with those obtained from approximated single-object solutions demonstrates the need to include correct multi-object wrapping algorithms in biomechanical models.
机译:肌肉力量的作用线暗示着关节周围肌肉的功能和表现。并非总是能够确定体内的肌肉作用线,因此经常使用计算技术来预测它们。通常将肌肉建模为紧绷的弹性绳,该弹性绳遵循包裹几何体上附件之间的最短测地路径。许多研究都与单个包装对象上的包装路径有关,而那些考虑了更多对象的研究已将带有迭代方法的单对象解决方案应用于寻找解决方案。这项研究提出了一种更有效的方法,可以找到特定的包裹问题的精确解决方案,在该包裹问题中,路径受多个表面约束。它还引入了基于能量最小化思想的更通用的包装技术,该技术已针对确切的解决方案进行了成功验证。这些方法适用于将三角肌环绕肱骨的元素建模为复合球体圆柱体的情况。将结果与从近似单对象解决方案获得的结果进行比较,表明需要在生物力学模型中包括正确的多对象包装算法。

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