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Vector-Based Integration of Local and Long-Range Information in Visual Cortex

机译:基于矢量的视觉皮层中局部和远程信息的集成

摘要

Integration of inputs by cortical neurons provides the basis for the complex information processing performed in the cerebral cortex. Here, we propose a new analytic framework for understanding integration within cortical neuronal receptive fields. Based on the synaptic organization of cortex, we argue that neuronal integration is a systems--level process better studied in terms of local cortical circuitry than at the level of single neurons, and we present a method for constructing self-contained modules which capture (nonlinear) local circuit interactions. In this framework, receptive field elements naturally have dual (rather than the traditional unitary influence since they drive both excitatory and inhibitory cortical neurons. This vector-based analysis, in contrast to scalarsapproaches, greatly simplifies integration by permitting linear summation of inputs from both "classical" and "extraclassical" receptive field regions. We illustrate this by explaining two complex visual cortical phenomena, which are incompatible with scalar notions of neuronal integration.
机译:皮质神经元对输入的整合为在大脑皮层中执行复杂信息处理提供了基础。在这里,我们提出了一个新的分析框架,用于理解皮质神经元感受野内的整合。基于皮质的突触组织,我们认为神经元整合是一个系统级的过程,在局部皮层电路方面比在单个神经元的水平上得到了更好的研究,我们提出了一种构建自包含模块的方法,该模块可捕获(非线性)局部电路相互作用。在这种框架下,感受野元素自然具有双重作用(而不是传统的统一影响,因为它们既驱动兴奋性神经元又抑制皮质神经元。与标量方法相比,这种基于矢量的分析通过允许对两个神经元的输入进行线性求和,大大简化了积分”)。我们通过解释两种复杂的视觉皮层现象来说明这一点,这与神经元整合的标量概念不兼容。

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