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On the dynamics of cortical development: synchrony and synaptic self-organization

机译:关于皮层发育的动力学:同步和突触的自组织。

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摘要

We describe a model for cortical development that resolves long-standing difficulties of earlier models. It is proposed that, during embryonic development, synchronous firing of neurons and their competition for limited metabolic resources leads to selection of an array of neurons with ultra-small-world characteristics. Consequently, in the visual cortex, macrocolumns linked by superficial patchy connections emerge in anatomically realistic patterns, with an ante-natal arrangement which projects signals from the surrounding cortex onto each macrocolumn in a form analogous to the projection of a Euclidean plane onto a Möbius strip. This configuration reproduces typical cortical response maps, and simulations of signal flow explain cortical responses to moving lines as functions of stimulus velocity, length, and orientation. With the introduction of direct visual inputs, under the operation of Hebbian learning, development of mature selective response “tuning” to stimuli of given orientation, spatial frequency, and temporal frequency would then take place, overwriting the earlier ante-natal configuration. The model is provisionally extended to hierarchical interactions of the visual cortex with higher centers, and a general principle for cortical processing of spatio-temporal images is sketched.
机译:我们描述了一种皮质发育模型,该模型解决了早期模型的长期难题。有人提出,在胚胎发育过程中,神经元的同步发射及其对有限代谢资源的竞争导致选择具有超小世界特征的神经元阵列。因此,在视觉皮层中,由浅层斑驳连接所链接的大柱以解剖学上逼真的模式出现,并通过产前布置将信号从周围皮层投射到每个大柱上,其形式类似于将欧几里德平面投影到莫比乌斯条上。这种配置再现了典型的皮质反应图,并且信号流的模拟将皮质对运动线的反应解释为刺激速度,长度和方向的函数。随着直接视觉输入的引入,在希伯来语学习的操作下,将发生针对给定方向,空间频率和时间频率的刺激的成熟选择性反应“调整”,从而覆盖了较早的产前配置。该模型暂时扩展到视觉皮层与更高中心的层次交互,并勾勒出时空图像的皮层处理的一般原理。

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