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Neural mechanism of response inhibition in a Go/NoGo tasks

机译:Go / NoGo任务中反应抑制的神经机制

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In study of response inhibition processes using 'Go/NoGo' task, a deconvolution computation technique is adapted to recover pure stimulus and response signals, hence avoid the inferential effect of the movement-related potentials that arise from motor response to the stimulus. Meanwhile, in order to present the ERP information (spatial distribution and time course) of different experiment tasks, a new common spatial pattern algorithm is designed and applied to the ERP data of Go/NoGo tasks. The result shows that NoGo trials contain a special P3 component, located in motor related cortex. This component reflects the additive effect of a response inhibition process in the NoGo task. Through a current source density analysis by LORETA, the source of NoGo N2 is located in right Anterior Cingulate area and right Medial Frontal Gyrus (BA 32) and the source of NoGo P3 is located in Superior Frontal Gyrus (BA6). This result suggests that the response inhibition includes two stages: in first stage, NoGo N2 component reflects inhibition of response preparation; and in the second stage, NoGo P3 component reflects inhibition of response execution.
机译:在使用“ Go / NoGo”任务的响应抑制过程的研究中,采用去卷积计算技术来恢复纯刺激和响应信号,因此避免了运动相关电位的推论效应,该推论效应是由运动对刺激的响应引起的。同时,为了展现不同实验任务的ERP信息(空间分布和时程),设计了一种新的通用空间模式算法并将其应用于Go / NoGo任务的ERP数据。结果表明,NoGo试验包含一个特殊的P3成分,位于运动相关皮层中。此组件反映了NoGo任务中响应抑制过程的累加效果。通过LORETA进行的当前源密度分析,NoGo N2的源位于右前扣带区和右内侧额回(BA 32),NoGo P3的源位于上额回(BA6)。该结果表明反应抑制包括两个阶段:在第一阶段,NoGo N2组分反映了对反应准备的抑制。在第二阶段,NoGo P3组件反映了对响应执行的抑制。

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