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首页> 外文期刊>Journal of Cognitive Neuroscience >Intact Proactive Motor Inhibition after Unilateral Prefrontal Cortex or Basal Ganglia Lesions
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Intact Proactive Motor Inhibition after Unilateral Prefrontal Cortex or Basal Ganglia Lesions

机译:单侧前额叶皮质或基底神经节病变后完整的主动运动抑制

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Previous research provided evidence for the critical importance of the PFC and BG for reactive motor inhibition, that is, when actions are cancelled in response to external signals. Less is known about the role of the PFC and BG in proactive motor inhibition, referring to preparation for an upcoming stop signal. In this study, patients with unilateral lesions to the BG or lateral PFC performed in a cued go/no-go task, whereas their EEG was recorded. The paradigm called for cue-based preparation for upcoming, lateralized no-go signals. Based on previous findings, we focused on EEG indices of cognitive control (prefrontal beta), motor preparation (sensorimotor mu/beta, contingent negative variation [CNV]), and preparatory attention (occipital alpha, CNV). On a behavioral level, no differences between patients and controls were found, suggesting an intact ability to proactively prepare for motor inhibition. Patients showed an altered preparatory CNV effect, but no other differences in electrophysiological activity related to proactive and reactive motor inhibition. Our results suggest a context-dependent role of BG and PFC structures in motor inhibition, being critical in reactive, unpredictable contexts, but less so in situations where one can prepare for stopping on a short timescale.
机译:以前的研究提供了PFC和BG对于无功电机抑制的关键重要性的证据,即响应于外部信号被取消措施。关于PFC和BG在主动电动机抑制中的作用,是较少的,参考即将到来的停止信号的制备。在这项研究中,对BG或横向PFC进行单侧病变的患者在CUE / NO-GO-TACK中进行,而他们的脑电图被记录。范例要求采取基于提示的准备,延期,横向的无转移信号。基于以前的发现,我们专注于认知控制(前额叶β),运动准备(SensorImotor MU / Beta,或有负变化[CNV])的EEG指标,以及预备关注(枕骨α,CNV)。在行为水平上,发现患者和对照之间的差异,表明完整地为运动抑制提供了完整的准备能力。患者显示出改变的预备CNV效应,但没有与主动和反应电机抑制有关的电生理活性的其他差异。我们的结果表明BG和PFC结构在电机抑制中的上下文相关作用,在反应性,不可预测的环境中至关重要,但在某个人可以准备在短时间间隔停止的情况下较少。

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