Shanghai Key Laboratory of Psychotic Disorders, Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai, 200030, China.
Shanghai Med-X Engineering Research Center, School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
Sci Rep. 2017 Aug 29;7(1):9662. doi: 10.1038/s41598-017-08807-z.
Successfully inhibiting a prepotent response tendency requires the attentional detection of signals which cue response cancellation. Although neuroimaging studies have identified important roles of stimulus-driven processing in the attentional detection, the effects of top-down control were scarcely investigated. In this study, scalp EEG was recorded from thirty-two participants during a modified Go/NoGo task, in which a spatial-cueing approach was implemented to manipulate top-down selective attention. We observed classical event-related potential components, including N2 and P3, in the attended condition of response inhibition. While in the ignored condition of response inhibition, a smaller P3 was observed and N2 was absent. The correlation between P3 and CNV during the foreperiod suggested an inhibitory role of P3 in both conditions. Furthermore, source analysis suggested that P3 generation was mainly localized to the midcingulate cortex, and the attended condition showed increased activation relative to the ignored condition in several regions, including inferior frontal gyrus, middle frontal gyrus, precentral gyrus, insula and uncus, suggesting that these regions were involved in top-down attentional control rather than inhibitory processing. Taken together, by segregating electrophysiological correlates of top-down selective attention from those of response inhibition, our findings provide new insights in understanding the neural mechanisms of response inhibition.
成功抑制优势反应倾向需要注意检测提示反应取消的信号。尽管神经影像学研究已经确定了刺激驱动加工在注意检测中的重要作用,但对自上而下控制的影响却鲜有研究。在这项研究中,我们在修改后的 Go/NoGo 任务中记录了 32 名参与者的头皮 EEG,该任务采用空间提示方法来操纵自上而下的选择性注意。我们观察到了经典的事件相关电位成分,包括 N2 和 P3,在反应抑制的注意条件下。而在反应抑制的忽略条件下,观察到较小的 P3,并且 N2 不存在。前周期期间 P3 和 CNV 之间的相关性表明 P3 在两种条件下都具有抑制作用。此外,源分析表明 P3 的产生主要定位于中扣带皮层,并且与忽略条件相比,在包括额下回、额中回、中央前回、脑岛和钩回在内的几个区域中,注意条件显示出增加的激活,这表明这些区域参与了自上而下的注意控制而不是抑制处理。总之,通过将自上而下的选择性注意的电生理相关性与反应抑制的电生理相关性分开,我们的研究结果为理解反应抑制的神经机制提供了新的见解。