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抑制控制与额眼区。

Inhibitory control and the frontal eye fields.

机构信息

University College London, UK.

出版信息

J Cogn Neurosci. 2010 Dec;22(12):2804-12. doi: 10.1162/jocn.2010.21416.

Abstract

Inhibitory control mechanisms are important in a range of behaviors to prevent execution of motor acts which, having been planned, are no longer necessary. Ready examples of this can be seen in a range of sports, such as cricket and baseball, where the choice between execution or inhibition of a bat swing must be made in a brief time interval. The role of the FEFs, an area typically described in relation to eye movement functions but also involved in visual processes, was investigated in an inhibitory control task using transcranial magnetic stimulation (TMS). A stop signal task with manual responses was used, providing measures of impulsivity and inhibitory control. TMS over FEF had no effect on response generation (impulsivity, indexed by go signal RT) but disrupted inhibitory control (indexed by stop signal RT). This is the first demonstration of a role for FEF in this type of task in normal subjects in a task which did not require eye movements and complements previous TMS findings of roles for pre-SMA and inferior frontal gyrus (IFG) in inhibitory control.

摘要

抑制控制机制在一系列行为中很重要,可防止执行已计划但不再必要的运动行为。在各种运动中都可以看到这方面的典型例子,例如板球和棒球,在这些运动中,必须在很短的时间间隔内做出执行或抑制球拍挥动的选择。使用经颅磁刺激 (TMS) 研究了通常与眼球运动功能相关但也涉及视觉过程的额前外侧皮层 (FEFs) 在抑制控制任务中的作用。使用手动反应的停止信号任务提供了冲动性和抑制控制的衡量标准。FEF 区的 TMS 对反应生成(冲动性,由 go 信号 RT 衡量)没有影响,但破坏了抑制控制(由停止信号 RT 衡量)。这是在不需要眼球运动的任务中,正常受试者中 FEF 在这种类型的任务中的作用的首次证明,补充了之前 TMS 研究结果,表明前扣带皮层和下额前回(IFG)在抑制控制中的作用。

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