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首页> 外文期刊>Journal of Computational Neuroscience >Two Cortical Circuits Control Propagating Waves in Visual Cortex
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Two Cortical Circuits Control Propagating Waves in Visual Cortex

机译:两个皮质电路控制视觉皮层中的传播波

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摘要

Visual stimuli produce waves of activity that propagate across the visual cortex of fresh water turtles. This study used a large-scale model of the cortex to examine the roles of specific types of cortical neurons in controlling the formation, speed and duration of these waves. The waves were divided into three components: initial depolarizations, primary propagating waves and secondary waves. The maximal conductances of each receptor type postsynaptic to each population of neurons in the model was systematically varied and the speed of primary waves, durations of primary waves and total wave durations were measured. The analyses indicate that wave formation and speed are controlled principally by feedforward excitation and inhibition, while wave duration is controlled principally by recurrent excitation and feedback inhibition.
机译:视觉刺激产生活动波,这些活动波在淡水龟的视觉皮层中传播。这项研究使用了皮质的大规模模型来检查特定类型的皮质神经元在控制这些波的形成,速度和持续时间中的作用。这些波分为三个部分:初始去极化,一次传播波和二次波。系统地改变模型中每个神经元群体突触后突触后每种受体类型的最大电导,并测量一次波的速度,一次波的持续时间和总波持续时间。分析表明,波的形成和速度主要由前馈激励和抑制来控制,而波的持续时间则主要由递归激励和反馈抑制来控制。

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