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Temporo-Spatial Dynamics of Event-Related EEG Beta Activity during the Initial Contingent Negative Variation

机译:初始或有负变化期间与事件有关的脑电图β活动的时空动力学。

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In the electroencephalogram (EEG), early anticipatory processes are accompanied by a slow negative potential, the initial contingent negative variation (iCNV), occurring between 500 and 1500 ms after cue onset over prefrontal cortical regions in tasks with cue-target intervals of about 3 s or longer. However, the temporal sequence of the distributed cortical activity contributing to iCNV generation remains unclear. During iCNV generation, selectively enhanced low-beta activity has been reported. Here we studied the temporal order of activation foci in cortical regions assumed to underlie iCNV generation using source reconstruction of low-beta (13–18 Hz) activity. During the iCNV, elicited by a cued simple reaction-time task, low-beta power peaked first (750 ms after cue onset) in anterior frontal and limbic regions and last (140 ms later) in posterior areas. This activity occurred 3300 ms before target onset and provides evidence for the temporally ordered involvement of both cognitive-control and motor-preparation processes already at early stages during the preparation for speeded action.
机译:在脑电图(EEG)中,早期预期过程伴随着缓慢的负电位,即初始偶然性负变异(iCNV),发生在提示目标间隔大约为3的任务的前额皮质区域提示后500至1500 ms之间s或更长。但是,尚不清楚iCNV产生的分布式皮层活动的时间顺序。在iCNV生成过程中,据报道选择性增强了低β活性。在这里,我们研究了使用低β(13–18 Hz)活动的源重构,在假定为iCNV产生基础的皮质区域中激活灶的时间顺序。在通过提示的简单反应时间任务引发的iCNV期间,低β功率首先在前额和边缘区域(提示开始后750毫秒)达到峰值,最后在后部区域达到峰值(之后140毫秒)。这项活动发生在目标发作之前的3300毫秒,并为在准备加快行动期间的早期就已经在认知控制和运动准备过程中按时间顺序介入提供了证据。

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