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哺乳动物双极细胞中的尖峰支持内视网膜的时间分层。

Spikes in mammalian bipolar cells support temporal layering of the inner retina.

机构信息

Werner Reichardt Centre for Integrative Neuroscience, Bernstein Centre for Computational Neuroscience, University of Tübingen, 72076 Tübingen, Germany.

出版信息

Curr Biol. 2013 Jan 7;23(1):48-52. doi: 10.1016/j.cub.2012.11.006. Epub 2012 Dec 13.

Abstract

In the mammalian retina, 10-12 different cone bipolar cell (BC) types decompose the photoreceptor signal into parallel channels, providing the basis for the functional diversity of retinal ganglion cells (RGCs). BCs differing in their temporal properties appear to project to different strata of the retina's inner synaptic layer, based on somatic recordings of BCs and excitatory synaptic currents measured in RGCs. However, postsynaptic currents in RGCs are influenced by dendritic morphology and receptor types, and the BC signal can be transformed at the axon terminals both through interactions with amacrine cells and through the generation of all-or-nothing spikes. Therefore, the temporal properties of the BC output have not been analyzed systematically across different types of mammalian BCs. We recorded calcium signals directly within axon terminals using two-photon imaging and show that BCs can be divided into ≥eight functional clusters. The temporal properties of the BC output were directly reflected in their anatomical organization within the retina's inner synaptic layer: faster cells stratified closer to the border between ON and OFF sublamina. Moreover, ≥three fastest groups generated clear all-or-nothing spikes. Therefore, the systematic projection pattern of BCs provides distinct temporal "building blocks" for the feature extracting circuits of the inner retina.

摘要

在哺乳动物的视网膜中,10-12 种不同的锥形双极细胞 (BC) 将光感受器信号分解成平行的通道,为视网膜神经节细胞 (RGC) 的功能多样性提供了基础。基于 BC 的体记录和在 RGC 中测量的兴奋性突触电流,具有不同时间特性的 BC 似乎投射到视网膜内突触层的不同层。然而,RGC 中的突触后电流受到树突形态和受体类型的影响,BC 信号可以在轴突末端通过与无长突细胞的相互作用以及通过全或无尖峰的产生进行转换。因此,BC 输出的时间特性尚未在不同类型的哺乳动物 BC 中进行系统分析。我们使用双光子成像直接在轴突末端记录钙信号,并表明 BC 可以分为≥八个功能簇。BC 输出的时间特性直接反映在它们在视网膜内突触层内的解剖组织中:更快的细胞分层更接近 ON 和 OFF 亚层之间的边界。此外,≥三个最快的组产生清晰的全或无尖峰。因此,BC 的系统投射模式为内视网膜的特征提取电路提供了独特的时间“构建块”。

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