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Capacity of small groups of muscles to accomplish precision grasping tasks

机译:小群肌肉完成精确抓握任务的能力

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An understanding of the capacity or ability of various muscle groups to generate endpoint forces that enable grasping tasks could provide a stronger biomechanical basis for the design of reconstructive surgery or rehabilitation for the treatment of the paralyzed or paretic hand. We quantified two-dimensional endpoint force distributions for every combination of the muscles of the index finger, in cadaveric specimens, to understand the capability of muscle groups to produce endpoint forces that accomplish three common types of grasps—tripod, tip and lateral pinch—characterized by a representative level of Coulomb friction. We found that muscle groups of 4 or fewer muscles were capable of generating endpoint forces that enabled performance of each of the grasping tasks examined. We also found that flexor muscles were crucial to accomplish tripod pinch; intrinsic muscles, tip pinch; and the dorsal interosseus muscle, lateral pinch. The results of this study provide a basis for decision making in the design of reconstructive surgeries and rehabilitation approaches that attempt to restore the ability to perform grasping tasks with small groups of muscles.
机译:对各种肌肉群产生能够实现抓握任务的端点力的能力的了解,可以为设计用于瘫痪或瘫痪手的重建手术或康复提供更强大的生物力学基础。我们在尸体标本中量化了食指肌肉每种组合的二维端点力分布,以了解肌肉群产生端点力的能力,这些端点力可实现三种常见的抓握类型(三脚架,尖端和侧向捏合)通过库仑摩擦的代表性水平。我们发现,由4个或更少的肌肉组成的肌肉群能够产生端点力,从而能够执行所检查的每个抓紧任务。我们还发现屈肌对于完成三脚架捏合至关重要。内在的肌肉,尖端捏;和背骨间肌,外侧捏。这项研究的结果为重建外科手术和康复方法的设计决策提供了依据,这些尝试和恢复方法试图恢复使用一小群肌肉执行抓握任务的能力。

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