Department of Psychology, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.
Cogn Affect Behav Neurosci. 2011 Dec;11(4):485-93. doi: 10.3758/s13415-011-0046-x.
The medial right frontal cortex is implicated in fast stopping of an initiated motor action in the stop-signal task (SST). To assess whether this region is also involved in the slower behavioural inhibition induced by goal conflict, we tested for effects of goal conflict (when stop and go tendencies are balanced) on low-frequency rhythms in the SST. Stop trials were divided, according to the delays at which the stop signal occurred, into short-, intermediate-, and long-delay trials. Consistent with goal-conflict processing, intermediate-delay trials were associated with greater 7-8 Hz EEG power than short- or long-delay trials at medial right frontal sites (Fz, F4, and F8). At F8, 7-8 Hz power was linked to high trait anxiety and neuroticism. A separate 4-7 Hz power increase was also seen in stop, relative to go, trials, but this was independent of delay, was maximal at the central midline site Cz, and predicted faster stopping. Together with previous data on the SST, these results suggest that the right frontal region could be involved in multiple inhibition mechanisms. We propose a hierarchical model of the control of stopping that integrates the literature on the neural control of fast motor stopping with that on slower, motive-directed behavioural inhibition.
内侧右额前皮质与在停止信号任务(SST)中快速停止已启动的运动动作有关。为了评估该区域是否也参与了由目标冲突引起的较慢的行为抑制,我们测试了目标冲突(当停止和前进趋势平衡时)对 SST 中低频节律的影响。根据停止信号出现的延迟,将停止试验分为短延迟、中延迟和长延迟试验。与目标冲突处理一致,中延迟试验与短延迟或长延迟试验相比,在右侧额前区(Fz、F4 和 F8)的 7-8 Hz EEG 功率更大。在 F8 处,7-8 Hz 功率与高特质焦虑和神经质有关。在停止相对于前进试验时,也观察到 4-7 Hz 功率的单独增加,但这与延迟无关,在中央中线部位 Cz 处最大,并预测更快的停止。与 SST 上的先前数据一起,这些结果表明右侧额叶区域可能参与多种抑制机制。我们提出了一种停止控制的分层模型,该模型整合了快速运动停止的神经控制文献与较慢的、动机导向的行为抑制的文献。