首页> 美国卫生研究院文献>The Journal of Neuroscience >Subsecond Changes in Top–Down Control Exerted by Human Medial Frontal Cortex during Conflict and Action Selection: A Combined Transcranial Magnetic Stimulation–Electroencephalography Study
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Subsecond Changes in Top–Down Control Exerted by Human Medial Frontal Cortex during Conflict and Action Selection: A Combined Transcranial Magnetic Stimulation–Electroencephalography Study

机译:冲突和动作选择过程中人额额叶皮层施加的自上而下控制的亚秒级变化:联合经颅磁刺激-脑电图研究

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摘要

Action selection requires choosing one of all the possible conflicting action plans that are available. There is currently a debate as to whether the dorsal medial frontal cortex (dMFC) merely detects or actively resolves response conflict. We used combined on-line transcranial magnetic stimulation and electroencephalographic recording (TMS–EEG) to test whether human dMFC plays a critical causal role in conflict resolution, and whether the mechanism for such a function is via interactions with primary motor cortex. In an Eriksen flanker task, subjects discriminated the direction of the centermost arrow in an array of five, responding with the left or right hand. The lateralized readiness potential (LRP), a measure of relative levels of activity in left and right motor cortices, was also recorded. Reaction times and error rates were higher on incongruent than congruent trials, and incongruent trials produced a positive LRP deflection reflecting initial partial activation of the incorrect response. On one-half of trials, repetitive TMS was applied to left dMFC starting 100 ms before visual stimulus onset and ending 100 ms afterward. TMS disrupted performance by selectively increasing error rates on contralateral (right hand) incongruent trials. TMS also only modulated the LRP on incongruent trials, causing an increased positive deflection (associated with preparation of the incorrect response) starting 180 ms after visual stimulus onset. TMS of a control site did not interfere with behavior or motor cortical activity. dMFC has a direct causal role in resolving conflict during action selection, and the mechanism involves the top–down modulation of primary motor cortical activity.
机译:选择行动需要选择所有可能的冲突行动计划之一。当前关于背内侧额叶皮质(dMFC)仅检测到还是主动解决反应冲突存在争议。我们使用经颅经颅磁刺激和脑电图记录(TMS-EEG)的组合测试来检验人类dMFC在解决冲突中是否起关键性的因果作用,以及这种功能的机制是否通过与初级运动皮层的相互作用来实现。在埃里克森(Eriksen)侧翼任务中,对象用五个手指分别区分最中心箭头的方向,并用左手或右手做出响应。还记录了侧卧准备就绪电位(LRP),它是左右运动皮层活动的相对水平的量度。在不一致的试验中,反应时间和错误率要高于一致试验,并且不一致试验产生的LRP偏转为正,反映出错误响应的最初部分激活。在一半的试验中,对左dMFC进行重复性TMS,开始于视觉刺激发作前100毫秒,之后100毫秒结束。 TMS通过选择性增加对侧(右手)不一致试验中的错误率来破坏性能。 TMS还仅在不一致的试验中调节LRP,导致视觉刺激发作后180毫秒开始的阳性偏斜增加(与错误反应的准备有关)。对照部位的TMS不会干扰行为或运动皮层活动。 dMFC在解决动作选择过程中的冲突中具有直接的因果作用,该机制涉及对初级运动皮层活动的自上而下的调节。

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