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视网膜内层突触的功能结构:双极细胞轴突终末分层对视觉信号的分离

Functional architecture of synapses in the inner retina: segregation of visual signals by stratification of bipolar cell axon terminals.

作者信息

Wu S M, Gao F, Maple B R

机构信息

Cullen Eye Institute, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Neurosci. 2000 Jun 15;20(12):4462-70. doi: 10.1523/JNEUROSCI.20-12-04462.2000.

Abstract

We correlated the morphology of salamander bipolar cells with characteristics of their light responses, recorded under voltage-clamp conditions. Twelve types of bipolar cells were identified, each displaying a unique morphology and level(s) of axon terminal stratification in the inner plexiform layer (IPL) and exhibiting light responses that differed with respect to polarity, kinetics, the relative strengths of rod and cone inputs, and characteristics of spontaneous EPSCs (sEPSCs) and IPSCs. In addition to the well known segregation of visual information into ON and OFF channels along the depth of the IPL, we found an overlying mapping of spectral information in this same dimension, with cone signals being transmitted predominantly to the central IPL and rod signals being sent predominantly to the margins of the IPL. The kinetics of bipolar cell responses correlated with this segregation of ON and OFF and of rod and cone information in the IPL. At light offset, rod-dominated cells displayed larger slow cationic current tails and smaller rapid overshoot responses than did cone-dominated cells. sEPSCs were generally absent in depolarizing bipolar cells but present in all hyperpolarizing bipolar cells (HBCs) and larger in rod-dominated HBCs than in cone-dominated HBCs. Inhibitory chloride currents, elicited both at light onset and light offset, tended to be larger for cone-dominated cells than for rod-dominated cells. This orderly segregation of visual signals along the depth of the IPL simplifies the integration of visual information in the retina, and it begins a chain of parallel processing in the visual system.

摘要

我们将蝾螈双极细胞的形态与其在电压钳制条件下记录的光反应特征进行了关联。识别出了12种双极细胞类型,每种类型在内部神经网层(IPL)中都呈现出独特的形态和轴突终末分层水平,并且表现出在极性、动力学、视杆和视锥输入的相对强度以及自发性兴奋性突触后电流(sEPSCs)和抑制性突触后电流(IPSCs)特征方面存在差异的光反应。除了众所周知的视觉信息沿IPL深度分为ON和OFF通道外,我们还在同一维度上发现了光谱信息的叠加映射,视锥信号主要传输到IPL的中央部分,而视杆信号主要发送到IPL的边缘。双极细胞反应的动力学与IPL中ON和OFF以及视杆和视锥信息的这种分离相关。在光熄灭时,视杆主导的细胞比视锥主导的细胞表现出更大的缓慢阳离子电流尾和更小的快速超射反应。去极化双极细胞中通常不存在sEPSCs,但在所有超极化双极细胞(HBCs)中存在,并且在视杆主导的HBCs中比在视锥主导的HBCs中更大。在光开始和光熄灭时引发的抑制性氯离子电流,视锥主导的细胞往往比视杆主导的细胞更大。视觉信号沿IPL深度的这种有序分离简化了视网膜中视觉信息的整合,并开启了视觉系统中并行处理的链条。

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本文引用的文献

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Morphological Classification of Bipolar Cells of the Primate Retina.灵长类视网膜双极细胞的形态学分类
Eur J Neurosci. 1991 Oct;3(11):1069-1088. doi: 10.1111/j.1460-9568.1991.tb00043.x.
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