首页> 美国卫生研究院文献>The Journal of Neuroscience >Suppression of Spontaneous Activity before Visual Response in the Primate V1 Neurons during a Visually Guided Saccade Task
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Suppression of Spontaneous Activity before Visual Response in the Primate V1 Neurons during a Visually Guided Saccade Task

机译:在视觉引导的扫视任务过程中抑制灵长类V1神经元视觉反应之前的自发活动。

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摘要

Visually guided saccadic eye movements are thought to involve multiple stages of processing in diverse brain structures including the primary visual cortex (V1). The variability of neural activity in each of these structures may present ambiguities for downstream stages in identifying sensory and motor signals among spontaneous discharges. The response time of saccadic eye movements made toward a visual target is correlated with the time of the first spikes in V1 that are evoked by the target (). This suggests that downstream neurons receiving the output of V1 are faced with a challenging task of discriminating first spikes of visual response against spontaneous discharge. Here we report a novel response property of the macaque V1 neurons. Immediately before neurons discharge a burst of activity to a visual saccade target, spontaneous discharges were transiently suppressed. This suppression was maximal ∼18 ms after target onset. Based on simulations of artificial spike trains, we propose that the transient suppression enhances temporal contrast for identifying the onset of visual response by increasing the reliability of detection of response onset by downstream neurons, thereby facilitating visually guided behavioral responses.
机译:视觉指导的眼跳运动被认为涉及包括主要视觉皮层(V1)在内的多种大脑结构的多个加工阶段。这些结构中的每一个中神经活动的可变性可能在下游阶段识别自发放电中的感觉和运动信号时表现出歧义。朝向视觉目标的眼球运动的响应时间与目标引起的V1中第一个尖峰的时间相关。这表明,接收V1输出的下游神经元面临着一项艰巨的任务,即区分针对自发放电的视觉反应的第一个峰值。在这里,我们报告猕猴V1神经元的新型响应属性。在神经元释放出对视觉扫视目标的爆发之前,自发放电被短暂抑制。在靶发作后,这种抑制最大〜18 ms。基于模拟的人工穗序列,我们建议瞬态抑制通过增加下游神经元响应发作检测的可靠性,从而促进视觉引导的行为反应,从而增强了用于识别视觉反应发作的时间对比。

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