首页> 美国卫生研究院文献>The Journal of Neuroscience >Muscle Synergies Obtained from Comprehensive Mapping of the Cortical Forelimb Representation Using Stimulus Triggered Averaging of EMG Activity
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Muscle Synergies Obtained from Comprehensive Mapping of the Cortical Forelimb Representation Using Stimulus Triggered Averaging of EMG Activity

机译:肌肉协同作用使用刺激触发的平均肌电活动平均从皮质前肢代表的全面制图中获得。

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Neuromuscular control of voluntary movement may be simplified using muscle synergies similar to those found using non-negative matrix factorization. We recently identified synergies in electromyography (EMG) recordings associated with both voluntary movement and movement evoked by high-frequency long-duration intracortical microstimulation applied to the forelimb representation of the primary motor cortex (M1). The goal of this study was to use stimulus-triggered averaging (StTA) of EMG activity to investigate the synergy profiles and weighting coefficients associated with poststimulus facilitation, as synergies may be hard-wired into elemental cortical output modules and revealed by StTA. We applied StTA at low (LOW, ∼15 μA) and high intensities (HIGH, ∼110 μA) to 247 cortical locations of the M1 forelimb region in two male rhesus macaques while recording the EMG of 24 forelimb muscles. Our results show that 10–11 synergies accounted for 90% of the variation in poststimulus EMG facilitation peaks from the LOW-intensity StTA dataset while only 4–5 synergies were needed for the HIGH-intensity dataset. Synergies were similar across monkeys and current intensities. Most synergy profiles strongly activated only one or two muscles; all joints were represented and most, but not all, joint directions of motion were represented. Cortical maps of the synergy weighting coefficients suggest only a weak organization. StTA of M1 resulted in highly diverse muscle activations, suggestive of the limiting condition of requiring a synergy for each muscle to account for the patterns observed.>SIGNIFICANCE STATEMENT Coordination of muscle activity and the neural origin of potential muscle synergies remains a fundamental question of neuroscience. We previously demonstrated that high-frequency long-duration intracortical microstimulation-evoked synergies were unrelated to voluntary movement synergies and were not clearly organized in the cortex. Here we present stimulus-triggered averaging facilitation-related muscle synergies, suggesting that when fundamental cortical output modules are activated, synergies approach the limit of single-muscle control. Thus, we conclude that if the CNS controls movement via linear synergies, those synergies are unlikely to be called from M1. This information is critical for understanding neural control of movement and the development of brain–machine interfaces.
机译:使用类似于使用非负矩阵分解法发现的肌肉协同作用,可以简化自愿运动的神经肌肉控制。我们最近在肌电图(EMG)记录中发现了与自愿运动和高频长时皮质内显微刺激应用于初级运动皮层(M1)的前肢诱发的运动相关的协同作用。这项研究的目的是使用EMG活动的刺激触发平均值(StTA)来研究与刺激后促进有关的协同作用谱和加权系数,因为协同作用可能被硬连线到基本皮质输出模块中并由StTA揭示。我们在两个雄性恒河猴的M1前肢区域的247个皮质位置分别以低强度(LOW,〜15μA)和高强度强度(HIGH,〜110μA)应用StTA,同时记录24条前肢肌肉的肌电图。我们的结果表明,低强度StTA数据集刺激后EMG促进峰变化的10-11种协同作用占90%,而高强度数据集仅需要4-5种协同作用。猴子和当前强度的协同作用相似。大多数协同作用只强烈激活一两个肌肉。代表了所有关节,并且代表了大多数(但不是全部)关节运动方向。协同权重系数的皮质图仅表明组织薄弱。 M1的StTA导致高度多样的肌肉激活,这表明要求每条肌肉协同作用以说明观察到的模式的局限性条件。>意义声明肌肉活动与潜在肌肉协同作用的神经起源的协调仍然是神经科学的基本问题。我们以前证明了高频长时间皮质内微刺激诱发的协同作用与自愿运动协同作用无关,并且在皮质中没有明确组织。在这里,我们介绍了刺激触发的平均促进相关的肌肉增效作用,表明当基本皮质输出模块被激活时,增效作用接近单肌控制的极限。因此,我们得出的结论是,如果CNS通过线性协同作用控制运动,则不太可能从M1调用这些协同作用。这些信息对于理解运动的神经控制和脑机接口的发展至关重要。

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