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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Flexible cortical control of task-specific muscle synergies
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Flexible cortical control of task-specific muscle synergies

机译:灵活的皮层控制特定任务的肌肉协同作用

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摘要

Correlation structure in the activity of muscles across movements is often interpreted as evidence for low-level, hardwired constraints on upper-limb function. However, muscle synergies may also emerge from optimal strategies to achieve high-level task goals within a redundant control space. To distinguish these contrasting interpretations, we examined the structure of muscle variability during operation of a myoelectric interface in which task constraints were dissociated from natural limb biomechanics. We found that, with practice, human subjects learned to shape patterns of covariation between arbitrary pairs of hand and forearm muscles appropriately for elliptical targets whose orientation varied on a trial-by-trial basis. Thus, despite arriving at the same average location in the effector space, performance was improved by buffering variability into those dimensions that least impacted task success. Task modulation of betafrequency intermuscular coherence indicated that differential recruitment of divergent corticospinal pathways contributed to positive correlations among muscles. However, this feedforward mechanism could not account for negative correlations observed in the presence of visual feedback. A second experiment revealed the development of fast, target-dependent visual responses consistent with "minimum intervention" control correcting predominantly task-relevant errors. Together, these mechanisms contribute to the dynamic emergence of task-specific muscle synergies appropriate for a wide range of abstract task goals.
机译:肌肉在运动中活动的相关性结构通常被解释为对上肢功能的低水平、硬连线限制的证据。然而,肌肉协同作用也可能来自在冗余控制空间内实现高级任务目标的最佳策略。为了区分这些对比鲜明的解释,我们检查了肌电界面操作过程中肌肉变异性的结构,其中任务约束与自然肢体生物力学分离。我们发现,通过练习,人类受试者学会了为椭圆靶子塑造任意手部和前臂肌肉对之间的协变模式,这些目标的方向在试验的基础上变化。因此,尽管在效应器空间中达到了相同的平均位置,但通过将可变性缓冲到对任务成功影响最小的维度,性能得到了提高。β频率肌间相干性的任务调节表明,不同皮质脊髓通路的差异募集有助于肌肉之间的正相关。然而,这种前馈机制无法解释在存在视觉反馈的情况下观察到的负相关。第二个实验揭示了快速的、依赖于目标的视觉反应的发展,这与“最小干预”控制一致,主要纠正了与任务相关的错误。总之,这些机制有助于动态出现适合各种抽象任务目标的任务特定肌肉协同作用。

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