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The Strength of Alpha–Beta Oscillatory Coupling Predicts Motor Timing Precision

机译:Alpha-Beta振动耦合的强度可预测电机定时精度

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摘要

Precise timing makes the difference between harmony and cacophony, but how the brain achieves precision during timing is unknown. In this study, human participants (7 females, 5 males) generated a time interval while being recorded with magnetoencephalography. Building on the proposal that the coupling of neural oscillations provides a temporal code for information processing in the brain, we tested whether the strength of oscillatory coupling was sensitive to self-generated temporal precision. On a per individual basis, we show the presence of alpha–beta phase–amplitude coupling whose strength was associated with the temporal precision of self-generated time intervals, not with their absolute duration. Our results provide evidence that active oscillatory coupling engages α oscillations in maintaining the precision of an endogenous temporal motor goal encoded in β power; the when of self-timed actions. We propose that oscillatory coupling indexes the variance of neuronal computations, which translates into the precision of an individual's behavioral performance.>SIGNIFICANCE STATEMENT Which neural mechanisms enable precise volitional timing in the brain is unknown, yet accurate and precise timing is essential in every realm of life. In this study, we build on the hypothesis that neural oscillations, and their coupling across time scales, are essential for the coding and for the transmission of information in the brain. We show the presence of alpha–beta phase–amplitude coupling (α–β PAC) whose strength was associated with the temporal precision of self-generated time intervals, not with their absolute duration. α–β PAC indexes the temporal precision with which information is represented in an individual's brain. Our results link large-scale neuronal variability on the one hand, and individuals' timing precision, on the other.
机译:精确的计时使和声与刺耳的声音有所区别,但是在计时期间大脑如何达到精确度尚不清楚。在这项研究中,人类参与者(7名女性,5名男性)在用脑磁图记录时产生了一个时间间隔。基于神经振荡的耦合为大脑中的信息处理提供时间码的建议,我们测试了振荡耦合的强度是否对自身产生的时间精度敏感。在每个人的基础上,我们显示出α-β相-幅值耦合的存在,其强度与自生时间间隔的时间精度有关,而与它们的绝对持续时间无关。我们的结果提供了证据,表明主动振荡耦合与α振荡有关,以维持以β功率编码的内生时间运动目标的精度。自定时动作的时间。我们提出,振荡耦合可以指示神经元计算的方差,从而转化为个体行为表现的精度。>意义声明尚不清楚哪种神经机制能够在大脑中实现精确的时序性计时,但准确度和计时性却是精确的在生活的每个领域都至关重要。在这项研究中,我们基于这样的假设:神经振荡及其跨时标的耦合对于大脑中信息的编码和传输至关重要。我们显示出存在α-β相-幅耦合(α-βPAC),其强度与自生时间间隔的时间精度有关,而与它们的绝对持续时间无关。 α-βPAC索引了在个人大脑中表示信息的时间精度。我们的研究结果一方面将大规模的神经元变异性与个人的计时精度联系起来。

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