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Scapular kinematic reconstruction – segmental optimization multibody optimization with open-loop or closed-loop chains: which one should be preferred?

机译:肩胛运动重建 - 分段优化用开环或闭环链进行多体优化:哪一个应该是首选?

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摘要

Several numerical approaches have been developed to address the soft tissue artefact, such as the segmental optimization and multibody kinematics optimizations using either open-loop or closed-loop chains. However, it is still not clear which method is the most efficient for scapular kinematics reconstruction. In this study, six kinematic models were compared to a silver standard, i.e. a scapula palpator, during a series of 55 postures with maximal amplitudes of both the arm and scapula performed by 15 subjects. The most accurate approaches were the multibody optimization with a closed-loop chain and the segmental optimization. They provided averaged scapula misorientations of 14.9 ± 6.7° and 16 ± 7.1, respectively. Regarding the closed-loop chain integrating a point-to-ellipsoid scapulothoracic joint, the ellipsoid providing the most accurate results was a thorax-size ellipsoid fitting the area browsed by the scapula. Eventually, considering the high implementation costs of a multibody kinematics optimization, the segmental optimization could be considered as appropriate for scapular kinematics reconstruction.
机译:已经开发了几种数值方法来解决软组织人工制品,例如使用开环或闭环链的分段优化和多体运动学优化。但是,仍然不清楚哪种方法是肩胛上的运动学重建最有效。在这项研究中,将六种运动模型与银标准进行比较,即肩胛骨垂直,在一系列55个姿势,具有由15个受试者进行的臂和肩胛骨的最大幅度。最准确的方法是具有闭环链和分段优化的多体优化。它们分别提供了平均肩胛骨监管,分别为14.9±6.7°和16±7.1。关于整合点对椭球脊椎植物关节的闭环链,提供最准确的结果的椭圆体是胸部椭圆形拟合肩胛骨浏览的区域。最终,考虑到多体运动学优化的高实施成本,可以考虑对肩胛上重建的适当的分段优化。

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