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首页> 外文期刊>Journal of Neurophysiology >Robustness of muscle synergies underlying three-dimensional force generation at the hand in healthy humans.
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Robustness of muscle synergies underlying three-dimensional force generation at the hand in healthy humans.

机译:在健康人体中,产生三维力的肌肉协同作用的稳健性。

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Previous studies using advanced matrix factorization techniques have shown that the coordination of human voluntary limb movements may be accomplished using combinations of a small number of intermuscular coordination patterns, or muscle synergies. However, the potential use of muscle synergies for isometric force generation has been evaluated mostly using correlational methods. The results of such studies suggest that fixed relationships between the activations of pairs of muscles are relatively rare. There is also emerging evidence that the nervous system uses independent strategies to control movement and force generation, which suggests that one cannot conclude a priori that isometric force generation is accomplished by combining muscle synergies, as shown in movement control. In this study, we used non-negative matrix factorization to evaluate the ability of a few muscle synergies to reconstruct the activation patterns of human arm muscles underlying the generation of three-dimensional (3-D) isometric forces at the hand. Surface electromyographic (EMG) data were recorded from eight key elbow and shoulder muscles during 3-D force target-matching protocols performed across a range of load levels and hand positions. Four synergies were sufficient to explain, on average, 95% of the variance in EMG datasets. Furthermore, we found that muscle synergy composition was conserved across biomechanical task conditions, experimental protocols, and subjects. Our findings are consistent with the view that the nervous system can generate isometric forces by assembling a combination of a small number of muscle synergies, differentially weighted according to task constraints.
机译:以前使用高级矩阵分解技术的研究表明,可以使用少量肌间协调模式或肌肉协同作用的组合来完成人类自愿肢体运动的协调。但是,大多数使用相关方法评估了肌肉协同作用在产生等距力方面的潜在用途。这些研究的结果表明,成对的肌肉激活之间的固定关系相对罕见。越来越多的证据表明,神经系统使用独立的策略来控制运动和力量的产生,这表明无法先验地得出等轴测力的产生是通过组合肌肉协同作用来完成的,如运动控制所示。在这项研究中,我们使用非负矩阵分解来评估一些肌肉协同作用的能力,以重建手部三维(3-D)等距力产生的人体手臂肌肉的激活模式。在3-D力目标匹配方案中,在一系列载荷水平和手部位置上执行操作时,从八只主要的肘部和肩膀肌肉记录了表面肌电图(EMG)数据。四个协同效应足以解释EMG数据集中平均95%的方差。此外,我们发现在生物力学任务条件,实验规程和受试者中,肌肉协同作用成分是保守的。我们的发现与这样的观点是一致的,即神经系统可以通过组合少量肌肉协同作用(根据任务限制进行加权加权)来产生等距力。

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