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Laminar Neural Field Model of Laterally Propagating Waves of Orientation Selectivity

机译:方向选择性横向传播波的层流神经场模型

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摘要

We construct a laminar neural-field model of primary visual cortex (V1) consisting of a superficial layer of neurons that encode the spatial location and orientation of a local visual stimulus coupled to a deep layer of neurons that only encode spatial location. The spatially-structured connections in the deep layer support the propagation of a traveling front, which then drives propagating orientation-dependent activity in the superficial layer. Using a combination of mathematical analysis and numerical simulations, we establish that the existence of a coherent orientation-selective wave relies on the presence of weak, long-range connections in the superficial layer that couple cells of similar orientation preference. Moreover, the wave persists in the presence of feedback from the superficial layer to the deep layer. Our results are consistent with recent experimental studies that indicate that deep and superficial layers work in tandem to determine the patterns of cortical activity observed in vivo.
机译:我们构建了初级视觉皮层(V1)的层状神经场模型,该模型由神经元的表层组成,该表层编码空间位置和耦合到仅编码空间位置的深层神经元的局部视觉刺激的方向。深层中的空间结构连接支持行进锋面的传播,从而推动了表层中传播的与方向有关的活动。使用数学分析和数值模拟的组合,我们建立了一个相干的方向选择波的存在依赖于在浅层中存在弱,远程连接的存在,这些连接耦合了具有相似方向偏好的单元。而且,在存在从表层到深层的反馈的情况下,波持续存在。我们的结果与最近的实验研究一致,后者表明深层和浅层共同作用,以确定体内观察到的皮层活动的模式。

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