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反扫视任务中的反射抑制取决于刺激前的神经过程。

Reflex suppression in the anti-saccade task is dependent on prestimulus neural processes.

作者信息

Everling S, Dorris M C, Munoz D P

机构信息

Department of Physiology, Queen's University, Kingston, Ontario, Canada.

出版信息

J Neurophysiol. 1998 Sep;80(3):1584-9. doi: 10.1152/jn.1998.80.3.1584.

Abstract

Reflexive responses often must be suppressed to correctly execute a voluntary behavior. It is largely unknown why this control sometimes fails. To examine the neural processes responsible for these failures, we recorded single-neuron activity in the superior colliculus (SC) in behaving monkeys during an anti-saccade task in which they had to suppress a saccade to a visual stimulus that suddenly appeared in the periphery and generate a saccade to the opposite side. We found that the level and distribution of prestimulus activity of buildup neurons in the SC was highly predictive of whether a correct response or an error occurred. A high level of prestimulus activity in buildup neurons at the location in the SC where the visual stimulus was represented was associated with the generation of a reflexive saccade to the stimulus. These findings suggest that the successful suppression of reflexive saccades is dependent on prestimulus neural processes in the SC.

摘要

为了正确执行自愿行为,反射性反应通常必须被抑制。目前尚不清楚这种控制有时为何会失败。为了研究导致这些失败的神经过程,我们在行为猴子的上丘(SC)中记录了单个神经元的活动,该实验采用了反扫视任务,在此任务中,猴子必须抑制对突然出现在视野边缘的视觉刺激的扫视,并向相反方向进行扫视。我们发现,SC中积累神经元的刺激前活动水平和分布能够高度预测正确反应或错误的发生。在SC中代表视觉刺激的位置,积累神经元的高水平刺激前活动与对该刺激的反射性扫视的产生有关。这些发现表明,反射性扫视的成功抑制依赖于SC中的刺激前神经过程。

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