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An outline of functional self-organization in V1: synchrony STLR and Hebb rules

机译:V1中的功能自组织概述:同步STLR和Hebb规则

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摘要

A model of self-organization of synapses in the striate cortex is described, and its functional implications discussed. Principal assumptions are: (a) covariance of cell firing declines with distance in cortex, (b) covariance of stimulus characteristics declines with distance in the visual field, and (c) metabolic rates are approximately uniform in all small axonal segments. Under these constraints, Hebbian learning implies a maximally stable synaptic configuration corresponding to anatomically and physiologically realistic ‘‘local maps’’, each of macro-columnar size, and each organized as Möbius projections of a “global map” of retinotopic form. Convergence to the maximally stable configuration is facilitated by the spatio-temporal learning rule. A tiling of V1, constructed of approximately mirror-image reflections of each local map by its neighbors, is formed. The model supplements standard concepts of feed-forward visual processing by introducing a new basis for contextual modulation and neural network identifications of visual signals, as perturbation of the synaptic configuration by rapid stimulus transients. On a long time-scale, synaptic development could overwrite the Möbius configuration, while LTP and LTD could mediate synaptic gain on intermediate time-scales.
机译:描述了纹状皮质中突触的自组织模型,并讨论了其功能含义。主要假设是:(a)细胞放电的协方差随皮层距离而下降;(b)刺激特性的协方差随视野距离而下降;(c)在所有小的轴突节段中,代谢率大致均一。在这些限制下,Hebbian学习意味着一个最大稳定的突触构型,对应于解剖学和生理上现实的“局部图”,每个都具有宏柱大小,并且每个都组织成视网膜视点形式的“全球图”的莫比乌斯投影。时空学习规则促进了向最大稳定配置的收敛。形成一个V1的平铺,该平铺由每个局部图的邻域的近似镜像反射构成。该模型通过为视觉信号的上下文调制和神经网络识别引入新的基础来补充前馈视觉处理的标准概念,以作为快速刺激瞬变对突触构型的扰动。在很长的时间尺度上,突触的发展可能会覆盖莫比乌斯的结构,而LTP和LTD可以在中间的时间尺度上调节突触的增益。

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