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Disinhibition And Stepwise Synchronization Of Neuronal Activity As Mechanisms Of Producing And Encoding Orientation Signals Within The Functional Modules In The Visual Cortex

机译:抑制和逐步同步神经元活动,作为在视皮层功能模块内产生和编码方向信号的机制

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The experiments have shown that signals reflecting orientation of a contrast vector are produced via disinhibition of competing parts of an ON-0FF dipole representing the afferent part of the module. This disinhibition manifests itself when the vector of contrast and the module's structural vector determined by orientation of the dipole's ON-OFF axis coincide. This results in a short (lasting milliseconds) synchronization of activity of neurons which Produces a co-operative process of spatial summation. It creates a wave of neuronal activity. As a result of repeated activation of afferent neurons by feedbacks the process of synchronization develops in a stepwise manner as a sequence of discrete waves of activity. This sequence determines the module's output activity and encodes the orientation signal produced by disinhibition.
机译:实验表明,反映对比度载体的反射取向的信号是通过缺失的互连偶极子的竞争部分而产生代表模块的传入部分的。当对比度和模块的结构向量通过偶极的开关轴的方向确定的对比度和模块的结构向量时,这种禁止表现出来。这导致神经元的活性的短(持久毫秒)同步,其产生了空间求和的合作过程。它产生了一股神经元活动。由于反馈反复激活传入神经元的激活,同步过程以逐步的方式作为一系列离散的活性波动。该序列确定模块的输出活动,并编码禁止产生的方向信号。

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