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Modeling the top-down influences on the lateral interactions in the visual cortex.

机译:对自顶向下对视觉皮层中的横向相互作用的影响进行建模。

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摘要

Attention modulates the amount of excitatory and inhibitory lateral interactions in the visual cortex. A recurrent neural network is proposed to account for modulatory influence of top-down signals. In the model, two types of inhibitions are distinguished: dendritic and lateral inhibitions. Dendritic inhibition regulates the amount of impact that surrounding cells may exert on a target cell via the dendrites of excitatory neurons and the dendrites of subpopulation of inhibitory neurons mediating lateral inhibition. Attention increases the amount of dendritic inhibition and prevents contextual interactions, while it has no effect on the target cell when there is no surround input. Computer simulations showed that the proposed model is able to exhibit properties of attentional gating. In the condition of focused attention, neural activity in the presence of surrounding stimuli is restored to the level as when the target stimulus is presented alone. Moreover, the model is able to show contrast gain and response gain on the contrast sensitivity function depending on the strength of the dendritic inhibition.
机译:注意调节视觉皮层中兴奋性和抑制性横向相互作用的量。提出了递归神经网络来解决自上而下的信号的调制影响。在模型中,区分了两种类型的抑制:树突状抑制和侧向抑制。树突抑制作用通过兴奋性神经元的树突和介导横向抑制作用的抑制性神经元亚群的树突来调节周围细胞可能对靶细胞施加的影响量。注意增加树突抑制的量并防止上下文相互作用,而当没有周围输入时,它对靶细胞没有影响。计算机仿真表明,所提出的模型能够表现出注意门控的特性。在集中注意力的情况下,存在周围刺激时的神经活动恢复到单独提供目标刺激时的水平。此外,该模型能够根据树突抑制的强度在对比敏感度函数上显示对比增益和响应增益。

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