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The Spatial Structure of Stimuli Shapes the Timescale of Correlations in Population Spiking Activity

机译:刺激的空间结构塑造了种群突增活动相关性的时间尺度

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摘要

Throughout the central nervous system, the timescale over which pairs of neural spike trains are correlated is shaped by stimulus structure and behavioral context. Such shaping is thought to underlie important changes in the neural code, but the neural circuitry responsible is largely unknown. In this study, we investigate a stimulus-induced shaping of pairwise spike train correlations in the electrosensory system of weakly electric fish. Simultaneous single unit recordings of principal electrosensory cells show that an increase in the spatial extent of stimuli increases correlations at short () timescales while simultaneously reducing correlations at long () timescales. A spiking network model of the first two stages of electrosensory processing replicates this correlation shaping, under the assumptions that spatially broad stimuli both saturate feedforward afferent input and recruit an open-loop inhibitory feedback pathway. Our model predictions are experimentally verified using both the natural heterogeneity of the electrosensory system and pharmacological blockade of descending feedback projections. For weak stimuli, linear response analysis of the spiking network shows that the reduction of long timescale correlation for spatially broad stimuli is similar to correlation cancellation mechanisms previously suggested to be operative in mammalian cortex. The mechanism for correlation shaping supports population-level filtering of irrelevant distractor stimuli, thereby enhancing the population response to relevant prey and conspecific communication inputs.
机译:在整个中枢神经系统中,成对的神经尖峰序列相互关联的时间尺度取决于刺激结构和行为背景。这种整形被认为是神经代码中重要变化的基础,但是负责的神经电路在很大程度上是未知的。在这项研究中,我们研究了在弱电鱼的电感应系统中,成对的尖峰串相关性的刺激诱导形状。主要电感应细胞的同时单个单元记录显示,刺激空间范围的增加会在短()时标上增加相关性,同时会减少长()时标上的相关性。在空间上广泛的刺激既使前馈传入输入饱和又吸收开环抑制反馈路径的假设下,电传感处理的前两个阶段的尖峰网络模型将复制此相关整形。我们使用电感应系统的自然异质性和递归反馈预测的药理学阻滞,通过实验验证了我们的模型预测。对于弱刺激,尖峰网络的线性响应分析表明,空间宽范围刺激的长时标相关性的减少与以前建议在哺乳动物皮质中起作用的相关性消除机制相似。相关整形的机制支持对无关的干扰物刺激进行种群级过滤,从而增强种群对相关猎物和特定通信输入的反应。

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