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用于肌肉骨骼上肢建模中组合式球柱面包裹的全局优化方法

Global optimization method for combined spherical-cylindrical wrapping in musculoskeletal upper limb modelling.

作者信息

Audenaert A, Audenaert E

机构信息

Centre for Corporate Sustainability (CEDON), European University College Brussels, EHSAL, Stormstraat 2, B-1000 Brussels, Belgium.

出版信息

Comput Methods Programs Biomed. 2008 Oct;92(1):8-19. doi: 10.1016/j.cmpb.2008.05.005. Epub 2008 Jul 7.

Abstract

In musculoskeletal modelling, many muscles cannot be represented as straight lines from origin to insertion because the bony and musculotendinous morphology of neighboring structures causes them to wrap. The majority of these passive structures can be adequately described as simple geometric shapes such as spheres and cylinders. Techniques for describing smooth muscle paths around multiple obstacles have been developed for modelling use. Until now obstacle-set methods have combined the path of single structures. This does not analytically define the shortest smooth path around multiple objects. When a sphere is included in a multiple-object wrapping algorithm, muscle paths around that sphere are restricted to a bundle of planes containing the sphere center. This assumed restriction can compromise the iterative process for finding the true shortest muscle path that satisfies all restrictions of a smooth path. This can cause model instability. The new method involves the determination of the shortest smooth muscle path in a spherical and cylindrical wrapping algorithm. A typical example is musculoskeletal modelling of the upper limb, where the muscle fibers have to wrap over this combination of obstacles.

摘要

在肌肉骨骼建模中,许多肌肉不能被表示为从起点到止点的直线,因为相邻结构的骨骼和肌肉肌腱形态会导致它们缠绕。这些被动结构中的大多数可以被充分描述为简单的几何形状,如球体和圆柱体。已经开发出用于描述围绕多个障碍物的平滑肌路径的技术以供建模使用。到目前为止,障碍物集方法已经结合了单个结构的路径。这并没有解析地定义围绕多个物体的最短平滑路径。当一个球体被纳入多物体包裹算法时,围绕该球体的肌肉路径被限制在包含球心的一束平面内。这种假设的限制可能会损害寻找满足平滑路径所有限制的真正最短肌肉路径的迭代过程。这可能会导致模型不稳定。新方法涉及在球形和圆柱形包裹算法中确定最短平滑肌肉路径。一个典型的例子是上肢的肌肉骨骼建模,其中肌肉纤维必须缠绕在这种障碍物组合上。

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