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Maximum isometric arm forces in the horizontal plane.

机译:水平面中的最大等距武装部队。

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In this paper, we measured the maximum isometric force at the hand in eight directions in the horizontal plane and at five positions in the workplace. These endpoint forces were the result of shoulder horizontal adduction/abduction and elbow flexion/extension torques. We found that the normalized maximum forces of all the six subjects deviated less than 15%, despite intra-subject differences in muscle strength of more than a factor of two. The maximum forces were found to systematically depend on the force direction and on the hand position in the workspace. The largest forces were found in a direction approximately along the line connecting shoulder joint and hand, and the smallest forces perpendicular to that line, thereby forming an elliptically shaped pattern. The elongation of the pattern was the largest for those hand positions having the more extended elbow joint. By using a lumped six-muscle model, with two mono-articular muscle pairs and one bi-articular pair, we were able to predict the observed force patterns. Here, we assumed that one of the muscles generates its maximum force and the others adjust their output to point the endpoint force in the required direction. We used a principal component analysis of the surface EMGs of simultaneously measured representatives of four of the six muscles. With the same model, we were then able to determine the principal directions of all the six muscle groups.
机译:在本文中,我们在水平面的八个方向和工作场所的五个位置测量了手的最大等距力。这些端点力是肩部水平内收/外展和肘部弯曲/伸展扭矩的结果。我们发现,尽管受试者内部肌肉力量的差异超过了两倍,但所有六名受试者的标准化最大力量偏差均小于15%。发现最大力系统地取决于力的方向和工作空间中的手的位置。发现最大的力在大约沿着连接肩关节和手的线的方向上,而最小的力垂直于该线,从而形成椭圆形的图案。对于那些具有更伸肘关节的手部位置,图案的伸长最大。通过使用具有两个单关节肌肉对和一个双关节肌肉对的六块集总模型,我们可以预测观察到的力模式。在这里,我们假设其中一根肌肉产生最大的力,而另一根则调整其输出以将端点力指向所需的方向。我们对六个肌肉中的四个肌肉同时测量的代表的表面肌电图进行了主成分分析。使用相同的模型,我们便能够确定所有六个肌肉组的主要方向。

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