从马尔可夫随机场理论到纹状视觉皮层的神经回路

M. Shirazi
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引用次数: 2

摘要

人们一致认为,视觉皮层细胞所表现出的反应选择性的几乎所有方面都是由皮层内抑制细胞创造或增强的。大量的实验证据支持抑制性皮层细胞具有定向特异性的观点。了解抑制性皮层细胞定向特异性的机制是理解纹状视觉皮层神经回路的关键。这篇文章的目的是展示这种定向特异性抑制是如何从支配无定向侧膝状细胞的纹状皮层中实现的。介绍了定向抑制的计算模型。该模型由三部分组成:(a)双层分层马尔可夫随机场;(b)根据最大后验估计原则制定的计算目标;(c)实现计算目标的确定性并行算法。引入了一个生理上合理的发射率编码神经回路来实现计算模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Markov random field theory to the neural circuitry of striate visual cortex
The consensus is that virtually all aspects of the response selectivity exhibited by visual cortical cells are either created of sharpened by intra-cortical inhibitory cells. There is abundant experimental evidence supporting the view that the inhibitory cortical cells are orientation specific. To understand the mechanism underlying the orientation specificity of inhibitory cortical cells is a key to understand the neural circuitry of the striate visual cortex. It is the purpose of this article to show how such an orientation-specific inhibition can be achieved from the striate-cortex innervating nonoriented lateral geniculate cells. A computational model for the orientation-specific inhibition is introduced. The model consists of three parts: (a) a two-layered hierarchical Markov random field; (b) a computational goal formulated based on the maximum a posteriori estimation principle; (c) a deterministic parallel algorithm to achieve the computational goal. A physiologically-plausible firing-rate-coded neural circuit is introduced to implement the computational model.
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