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视觉通路中的分布编码

Distribution coding in the visual pathway.

作者信息

Sanderson A C, Kozak W M, Calvert T W

出版信息

Biophys J. 1973 Mar;13(3):218-44. doi: 10.1016/S0006-3495(73)85982-X.

Abstract

Although a variety of types of spike interval histograms have been reported, little attention has been given to the spike interval distribution as a neural code and to how different distributions are transmitted through neural networks. In this paper we present experimental results showing spike interval histograms recorded from retinal ganglion cells of the cat. These results exhibit a clear correlation between spike interval distribution and stimulus condition at the retinal ganglion cell level. The averaged mean rates of the cells studied were nearly the same in light as in darkness whereas the spike interval histograms were much more regular in light than in darkness. We present theoretical models which illustrate how such a distribution coding at the retinal level could be "interpreted" or recorded at some higher level of the nervous system such as the lateral geniculate nucleus. Interpretation is an essential requirement of a neural code which has often been overlooked in modeling studies. Analytical expressions are derived describing the role of distribution coding in determining the transfer characteristics of a simple interaction model and of a lateral inhibition network. Our work suggests that distribution coding might be interpreted by simply interconnected neural networks such as relay cell networks, in general, and the primary thalamic sensory nuclei in particular.

摘要

尽管已经报道了多种类型的脉冲间隔直方图,但作为一种神经编码的脉冲间隔分布以及不同分布如何通过神经网络进行传递却很少受到关注。在本文中,我们展示了从猫的视网膜神经节细胞记录的脉冲间隔直方图的实验结果。这些结果表明在视网膜神经节细胞水平上,脉冲间隔分布与刺激条件之间存在明显的相关性。所研究细胞的平均发放率在光照和黑暗条件下几乎相同,然而脉冲间隔直方图在光照下比在黑暗中更加规则。我们提出了理论模型,阐述了视网膜水平的这种分布编码如何能够在神经系统的一些更高层次(如外侧膝状体核)被“解读”或记录。解读是神经编码的一个基本要求,而在建模研究中常常被忽视。推导了分析表达式,描述了分布编码在确定简单相互作用模型和侧向抑制网络的传递特性中的作用。我们的工作表明,一般来说,分布编码可能由简单相互连接的神经网络(如中继细胞网络)来解读,特别是由丘脑主要感觉核来解读。

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