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辅助眼区的性能监测

Performance monitoring by the supplementary eye field.

作者信息

Stuphorn V, Taylor T L, Schall J D

机构信息

Vanderbilt Vision Research Center, Department of Psychology, Vanderbilt University, Nashville, Tennessee 37240, USA.

出版信息

Nature. 2000 Dec 14;408(6814):857-60. doi: 10.1038/35048576.

Abstract

Intelligent behaviour requires self-control based on the consequences of actions. The countermanding task is designed to study self-control; it requires subjects to withhold planned movements in response to an imperative stop signal, which they can do with varying success. In humans, the medial frontal cortex has been implicated in the supervisory control of action. In monkeys, the supplementary eye field in the dorsomedial frontal cortex is involved in producing eye movements, but its precise function has not been clarified. To investigate the role of the supplementary eye field in the control of eye movements, we recorded neural activity in macaque monkeys trained to perform an eye movement countermanding task. Distinct groups of neurons were active after errors, after successful withholding of a partially prepared movement, or in association with reinforcement. These three forms of activation could not be explained by sensory or motor factors. Our results lead us to put forward the hypothesis that the supplementary eye field contributes to monitoring the context and consequences of eye movements.

摘要

智能行为需要基于行动后果的自我控制。反指令任务旨在研究自我控制;它要求受试者根据强制停止信号抑制计划好的动作,而他们在这方面的成功率各不相同。在人类中,内侧前额叶皮层与动作的监督控制有关。在猴子中,背内侧前额叶皮层中的辅助眼区参与产生眼球运动,但其确切功能尚未阐明。为了研究辅助眼区在眼球运动控制中的作用,我们记录了经过训练执行眼球运动反指令任务的猕猴的神经活动。不同组的神经元在错误发生后、成功抑制部分准备好的动作后或与强化相关时会活跃起来。这三种激活形式无法用感觉或运动因素来解释。我们的研究结果使我们提出这样的假设,即辅助眼区有助于监测眼球运动的背景和后果。

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