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人类动作停止中额部、运动和肌肉过程的时间级联。

Temporal cascade of frontal, motor and muscle processes underlying human action-stopping.

机构信息

Department of Psychology, University of California, San Diego, United States.

出版信息

Elife. 2020 Mar 18;9:e50371. doi: 10.7554/eLife.50371.

Abstract

Action-stopping is a canonical executive function thought to involve top-down control over the motor system. Here we aimed to validate this stopping system using high temporal resolution methods in humans. We show that, following the requirement to stop, there was an increase of right frontal beta (~13 to 30 Hz) at ~120 ms, likely a proxy of right inferior frontal gyrus; then, at 140 ms, there was a broad skeletomotor suppression, likely reflecting the impact of the subthalamic nucleus on basal ganglia output; then, at ~160 ms, suppression was detected in the muscle, and, finally, the behavioral time of stopping was ~220 ms. This temporal cascade supports a physiological model of action-stopping, and partitions it into subprocesses that are isolable to different nodes and are more precise than the behavioral latency of stopping. Variation in these subprocesses, including at the single-trial level, could better explain individual differences in impulse control.

摘要

动作停止是一种被认为涉及运动系统自上而下控制的典型执行功能。在这里,我们旨在使用人类的高时间分辨率方法来验证这个停止系统。我们表明,在需要停止之后,大约在 120 毫秒时会出现右侧额部β波(~13 到 30 Hz)增加,可能是右侧额下回的代表;然后,在 140 毫秒时,会出现广泛的骨骼运动抑制,可能反映了苍白球的亚核对基底节输出的影响;然后,大约在 160 毫秒时,会在肌肉中检测到抑制,最后,停止的行为时间约为 220 毫秒。这种时间级联支持动作停止的生理模型,并将其划分为可分离到不同节点的子过程,比停止的行为潜伏期更精确。这些子过程的变化,包括在单个试验水平上的变化,可能可以更好地解释冲动控制的个体差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76db/7159878/e12d6ecc3fee/elife-50371-fig1.jpg

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