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Sensory coding accuracy and perceptual performance are improved during the desynchronized cortical state

机译:在不同步的皮质状态下感觉编码的准确性和感知性能得到改善

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摘要

Cortical activity changes continuously during the course of the day. At a global scale, population activity varies between the ‘synchronized’ state during sleep and ‘desynchronized’ state during waking. However, whether local fluctuations in population synchrony during wakefulness modulate the accuracy of sensory encoding and behavioral performance is poorly understood. Here, we show that populations of cells in monkey visual cortex exhibit rapid fluctuations in synchrony ranging from desynchronized responses, indicative of high alertness, to highly synchronized responses. These fluctuations are local and control the trial variability in population coding accuracy and behavioral performance in a discrimination task. When local population activity is desynchronized, the correlated variability between neurons is reduced, and network and behavioral performance are enhanced. These findings demonstrate that the structure of variability in local cortical populations is not noise but rather controls how sensory information is optimally integrated with ongoing processes to guide network coding and behavior.
机译:皮层活动在一天中持续变化。在全球范围内,人口活动在睡眠期间处于“同步”状态和醒来期间处于“非同步”状态之间变化。但是,人们对唤醒过程中群体同步的局部波动是否会调节感觉编码的准确性和行为表现知之甚少。在这里,我们显示猴子视觉皮层中的细胞群体显示出快速的同步波动,范围从表示高警惕的失步响应到高度同步的响应。这些波动是局部的,可以控制歧视任务中人群编码准确性和行为表现的试验变异性。当本地人口活动不同步时,神经元之间的相关变异性会降低,网络和行为表现会得到增强。这些发现表明,局部皮层种群的变异性结构不是噪声,而是控制感觉信息如何与正在进行的过程最佳地集成在一起,以指导网络编码和行为。

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