首页> 美国卫生研究院文献>The Journal of Neuroscience >Selective Movement Preparation Is Subserved by Selective Increases in Corticomuscular Gamma-Band Coherence
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Selective Movement Preparation Is Subserved by Selective Increases in Corticomuscular Gamma-Band Coherence

机译:选择性运动准备是通过选择性增加皮质肾小球γ谱带连贯性。

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摘要

Local groups of neurons engaged in a cognitive task often exhibit rhythmically synchronized activity in the gamma band, a phenomenon that likely enhances their impact on downstream areas. The efficacy of neuronal interactions may be enhanced further by interareal synchronization of these local rhythms, establishing mutually well timed fluctuations in neuronal excitability. This notion suggests that long-range synchronization is enhanced selectively for connections that are behaviorally relevant. We tested this prediction in the human motor system, assessing activity from bilateral motor cortices with magnetoencephalography and corresponding spinal activity through electromyography of bilateral hand muscles. A bimanual isometric wrist extension task engaged the two motor cortices simultaneously into interactions and coherence with their respective corresponding contralateral hand muscles. One of the hands was cued before each trial as the response hand and had to be extended further to report an unpredictable visual go cue. We found that, during the isometric hold phase, corticomuscular coherence was enhanced, spatially selective for the corticospinal connection that was effectuating the subsequent motor response. This effect was spectrally selective in the low gamma-frequency band (40–47 Hz) and was observed in the absence of changes in motor output or changes in local cortical gamma-band synchronization. These findings indicate that, in the anatomical connections between the cortex and the spinal cord, gamma-band synchronization is a mechanism that may facilitate behaviorally relevant interactions between these distant neuronal groups.
机译:参与认知任务的局部神经元组通常在γ波段表现出节律性同步活动,这种现象可能会增强其对下游区域的影响。这些局部节律的区域间同步可以进一步增强神经元相互作用的功效,从而在神经元兴奋性中建立相互适时的波动。此概念表明,对于行为相关的连接,可以有选择地增强远程同步。我们在人体运动系统中测试了这一预测,通过磁脑电图评估双侧运动皮层的活动,并通过双侧手部肌肉的肌电图评估相应的脊柱活动。双向等距腕部伸展任务同时使两个运动皮层与各自相应的对侧手部肌肉发生相互作用和连贯。在每次试验之前,一只手被提示为响应手,必须进一步伸出手以报告无法预测的视觉提示。我们发现,在等轴测保持阶段,皮质与神经之间的连贯性得到增强,对皮质椎体连接的空间选择性增强,从而实现了随后的运动反应。这种作用在低伽马频带(40-47 Hz)中具有光谱选择性,并且在电机输出没有变化或局部皮质伽马频带同步没有变化的情况下观察到。这些发现表明,在皮质和脊髓之间的解剖学联系中,γ波段同步是一种机制,可以促进这些遥远的神经元组之间行为相关的相互作用。

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