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乌龟(中亚池龟)视网膜中视锥光感受器与水平细胞之间的神经相互作用。

Neural interactions between cone photoreceptors and horizontal cells in the turtle (Mauremys caspica) retina.

作者信息

Asi H, Perlman I

机构信息

Bruce Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Vis Neurosci. 1998 Jan-Feb;15(1):1-13. doi: 10.1017/s0952523898146047.

Abstract

Horizontal cells and cone photoreceptors in the vertebrate retina are interconnected by a complex network of synapses leading to the generation of color-coded responses in chromaticity horizontal cells. A simple cascade model of excitatory feedforward and inhibitory feedback synapses had been suggested to underlie these observations. In this study, the photoresponses of cones and horizontal cells were recorded intracellularly from the turtle eyecup. Three different approaches were adopted in order to test quantitatively the cascade model. Comparing linearity functions between these neurons indicated multiple excitatory inputs to each type of horizontal cells. The depolarizing photoresponses of R/G C-type horizontal cells were considerably faster than those of L-type horizontal cells but slower than those recorded from L-cones. This observation disagrees with the basic assumption of the cascade model that assign the depolarizing photoresponses of R/G C-type horizontal cells to a negative feedback pathway from L-type horizontal cells onto M-cones. Finally, the action spectra of each of the three types of horizontal cells could not be solely accounted for by input from one spectral type of cones. Only by assuming excitatory and inhibitory inputs from all spectral types of cones, the action spectra of all types of horizontal cells could be reconstructed. These findings suggest that the negative feedback pathways from horizontal cells onto cones in the turtle retina cannot solely account for the chromatic properties of the horizontal cells and support a direct inhibitory inputs from cones to turtle horizontal cells.

摘要

脊椎动物视网膜中的水平细胞和视锥光感受器通过复杂的突触网络相互连接,从而在色度水平细胞中产生颜色编码反应。有人提出一个简单的兴奋性前馈和抑制性反馈突触级联模型来解释这些现象。在本研究中,从龟眼杯细胞内记录了视锥细胞和水平细胞的光反应。为了定量测试级联模型,采用了三种不同的方法。比较这些神经元之间的线性函数表明,每种类型的水平细胞都有多个兴奋性输入。R/G C型水平细胞的去极化光反应比L型水平细胞的快得多,但比从L视锥细胞记录的慢。这一观察结果与级联模型的基本假设不一致,该假设将R/G C型水平细胞的去极化光反应归因于从L型水平细胞到M视锥细胞的负反馈通路。最后,三种类型的水平细胞的作用光谱不能仅由一种光谱类型的视锥细胞的输入来解释。只有假设来自所有光谱类型视锥细胞的兴奋性和抑制性输入,才能重建所有类型水平细胞的作用光谱。这些发现表明,龟视网膜中从水平细胞到视锥细胞的负反馈通路不能单独解释水平细胞的颜色特性,并支持视锥细胞对龟水平细胞的直接抑制性输入。

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