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旧貌换新颜:前额叶和小脑区域对反向抑制的贡献。

Out with the Old and in with the New: the Contribution of Prefrontal and Cerebellar Areas to Backward Inhibition.

机构信息

Santa Lucia Foundation IRCCS , Via Ardeatina, 306, 00179, Rome, Italy.

Department of Medical and Surgical Sciences, "Magna Graecia" University of Catanzaro, Viale Europa - Loc. Germaneto, 88100, Catanzaro, Italy.

出版信息

Cerebellum. 2020 Jun;19(3):426-436. doi: 10.1007/s12311-020-01115-9.

Abstract

The inhibitory mechanism named backward inhibition (BI) counteracts interference of previous tasks supporting task switching. For instance, if task set A is inhibited when switching to task B, then it should take longer to immediately return to task set A (as occurring in an ABA sequence), as compared to a task set that has not been just inhibited (as occurring in a CBA sequence), because extra time will be needed to overcome the inhibition of task set A.The evidenced prefrontal and cerebellar role in inhibitory control suggests their involvement even in BI. Here, for the first time, we modulated the excitability of multiple brain sites (right presupplementary motor area (pre-SMA), left and right cerebellar hemispheres) through continuous theta burst stimulation (cTBS) in a valuable sham-controlled order-balanced within-subject experimental design in healthy individuals performing two domain-selective (verbal and spatial) task-switching paradigms. Verbal BI was abolished by prefrontal or cerebellar stimulations through opposite alterations of the basal pattern: cTBS on pre-SMA increased CBA reaction times, disclosing the current prefrontal inhibition of any interfering old task. Conversely, cerebellar cTBS decreased ABA reaction times, disclosing the current cerebellar recognition of sequences in which it is necessary to overcome previously inhibited events.

摘要

被称为回溯抑制(BI)的抑制机制可以抵消先前任务对任务转换的干扰。例如,如果在切换到任务 B 时抑制任务集 A,那么与没有刚刚被抑制的任务集(如在 CBA 序列中)相比,立即返回任务集 A(如在 ABA 序列中)应该需要更长的时间,因为需要额外的时间来克服任务集 A 的抑制。证据表明前额叶和小脑在抑制控制中的作用表明它们甚至参与了 BI。在这里,我们首次通过连续 theta 爆发刺激 (cTBS) 在健康个体中使用有价值的 sham 对照、平衡的、基于个体的实验设计,对多个大脑部位(右侧辅助运动区 (pre-SMA)、左侧和右侧小脑半球)的兴奋性进行了调制,这些个体执行了两个域选择性(言语和空间)任务转换范式。通过改变基底模式,前额叶或小脑刺激可以消除言语 BI:pre-SMA 上的 cTBS 增加了 CBA 的反应时间,揭示了当前前额叶对任何干扰性旧任务的抑制。相反,小脑 cTBS 降低了 ABA 的反应时间,揭示了当前小脑对需要克服先前抑制事件的序列的识别。

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