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蝾螈视网膜中神经节细胞的功能组织

Functional organization of ganglion cells in the salamander retina.

作者信息

Segev Ronen, Puchalla Jason, Berry Michael J

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

J Neurophysiol. 2006 Apr;95(4):2277-92. doi: 10.1152/jn.00928.2005. Epub 2005 Nov 23.

DOI:10.1152/jn.00928.2005
PMID:16306176
Abstract

Recently, we reported a novel technique for recording all of the ganglion cells in a retinal patch and showed that their receptive fields cover visual space roughly 60 times over in the tiger salamander. Here, we carry this analysis further and divide the population of ganglion cells into functional classes using quantitative clustering algorithms that combine several response characteristics. Using only the receptive field to classify ganglion cells revealed six cell types, in agreement with anatomical studies. Adding other response measures served to blur the distinctions between these cell types rather than resolve further classes. Only the biphasic off type had receptive fields that tiled the retina. Even when we attempted to split these classes more finely, ganglion cells with almost identical functional properties were found to have strongly overlapping spatial receptive fields. A territorial spatial organization, where ganglion cell receptive fields tend to avoid those of other cells of the same type, was only found for the biphasic off cell. We further studied the functional segregation of the ganglion cell population by computing the amount of visual information shared between pairs of cells under natural movie stimulation. This analysis revealed an extensive mixing of visual information among cells of different functional type. Together, our results indicate that the salamander retina uses a population code in which every point in visual space is represented by multiple neurons with subtly different visual sensitivities.

摘要

最近,我们报道了一种记录视网膜片层中所有神经节细胞的新技术,并表明在虎螈中它们的感受野大约覆盖视觉空间60次。在这里,我们进一步进行这项分析,并使用结合了多种反应特征的定量聚类算法将神经节细胞群体分为功能类别。仅使用感受野对神经节细胞进行分类揭示了六种细胞类型,这与解剖学研究一致。添加其他反应测量方法反而模糊了这些细胞类型之间的区别,而不是进一步区分出更多类别。只有双相off型细胞的感受野覆盖视网膜。即使我们试图更精细地划分这些类别,发现具有几乎相同功能特性的神经节细胞具有强烈重叠的空间感受野。仅在双相off细胞中发现了一种区域空间组织,即神经节细胞的感受野倾向于避开同类型其他细胞的感受野。我们通过计算在自然电影刺激下细胞对之间共享的视觉信息量,进一步研究了神经节细胞群体的功能分离。这项分析揭示了不同功能类型细胞之间视觉信息的广泛混合。总之,我们的结果表明,蝾螈视网膜使用群体编码,其中视觉空间中的每个点由多个具有细微不同视觉敏感性的神经元表示。

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Functional organization of ganglion cells in the salamander retina.蝾螈视网膜中神经节细胞的功能组织
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