首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >A model of direction selectivity in cortical simple cells based on lagged thalamic input and intracortical feedback
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A model of direction selectivity in cortical simple cells based on lagged thalamic input and intracortical feedback

机译:基于滞后丘脑输入和皮质内反馈的皮质简单细胞方向选择性模型

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A model of a single hypercolumn in the primary visual cortex for the analysis of simple cell orientation and direction selectivity is proposed. The model embodies a feedforward mechanism, based on the convergence of lagged and nonlagged inputs onto a cortical cell, to reproduce the spatial and temporal structure of the receptive field, and lateral (inhibitory and excitatory) connections within the hypercolumn. It explains both orientation and direction selectivity of simple cells. The response properties of the two types of inputs are described by the product of linear spatial and temporal response functions. To characterize the temporal response properties of lagged and nonlagged neurons we have used pure time delays. The lateral connections are arranged in a push-pull fashion. Simulation results show that the model is able to mimic several experimental data. In particular, it is able to reproduce the response of simple cortical cells, with space-time inseparable receptive field, characterized by a strong direction selectivity.
机译:提出了一个主要视觉皮层中的单个超柱模型,用于分析简单的细胞定向和方向选择性。该模型体现了前馈机制,该机制基于滞后和非滞后输入到皮质细胞上的汇聚,以重现接受场的时空结构以及超柱内的横向(抑制性和兴奋性)连接。它解释了简单单元格的方向和方向选择性。两种类型的输入的响应属性由线性空间和时间响应函数的乘积来描述。为了表征滞后和非滞后神经元的时间响应特性,我们使用了纯时间延迟。横向连接件以推挽方式布置。仿真结果表明,该模型能够模拟多个实验数据。尤其是,它能够以时空不可分离的感受野,以强烈的方向选择性为特征,再现简单皮质细胞的反应。

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