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神经相互作用如何在蝾螈视网膜中形成神经反应。

How neural interactions form neural responses in the salamander retina.

作者信息

Teeters J, Jacobs A, Werblin F

机构信息

University of California at Berkeley, USA.

出版信息

J Comput Neurosci. 1997 Jan;4(1):5-27. doi: 10.1023/a:1008840709467.

Abstract

A wide range of experimental data characterizing properties of individual salamander retinal cells and synaptic interactions are integrated to form a quantitative computational model of visual function in the salamander retina. The model is used to show how specific interactions between neurons and between networks of neurons can lead-to the integrated response behavior of individual cells deep in the retina. The model is also used to illustrate how the representation of moving and stationary stimuli is encoded in a series of layer-by-layer transformations leading to the final retinal output at the ganglion cell layer.

摘要

一系列描述单个蝾螈视网膜细胞特性和突触相互作用的实验数据被整合起来,以形成蝾螈视网膜视觉功能的定量计算模型。该模型用于展示神经元之间以及神经元网络之间的特定相互作用如何导致视网膜深处单个细胞的综合反应行为。该模型还用于说明移动和静止刺激的表征如何在一系列逐层转换中进行编码,从而导致神经节细胞层的最终视网膜输出。

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