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Independent control of reciprocal and lateral inhibition at the axon terminal of retinal bipolar cells

机译:视网膜双极细胞轴突末端的相互和侧向抑制的独立控制

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摘要

Abstract Bipolar cells (BCs), the second order neurons in the vertebrate retina, receive two types of GABAergic feedback inhibition at their axon terminal: reciprocal and lateral inhibition. It has been suggested that two types of inhibition may be mediated by different pathways. However, how each inhibition is controlled by excitatory BC output remains to be clarified. Here, we applied single/dual whole cell recording techniques to the axon terminal of electrically coupled BCs in slice preparation of the goldfish retina, and found that each inhibition was regulated independently. Activation voltage of each inhibition was different: strong output from a single BC activated reciprocal inhibition, but could not activate lateral inhibition. Outputs from multiple BCs were essential for activation of lateral inhibition. Pharmacological examinations revealed that composition of transmitter receptors and localization of Na+ channels were different between two inhibitory pathways, suggesting that different amacrine cells may mediate each inhibition. Depending on visual inputs, each inhibition could be driven independently. Model simulation showed that reciprocal and lateral inhibition cooperatively reduced BC outputs as well as background noise, thereby preserving high signal-to-noise ratio. Therefore, we conclude that excitatory BC output is efficiently regulated by the dual operating mechanisms of feedback inhibition without deteriorating the quality of visual signals.
机译:摘要双极细胞(BCs)是脊椎动物视网膜中的第二级神经元,在其轴突末端受到两种类型的GABA能反馈抑制:相互抑制和横向抑制。已经提出两种抑制作用可以通过不同的途径介导。然而,如何通过兴奋性BC输出控制每种抑制作用尚待阐明。在这里,我们将单/双全细胞记录技术应用于金鱼视网膜切片制备中电耦合BC的轴突末端,并发现每种抑制作用是独立调节的。每种抑制的激活电压是不同的:单个BC的强输出激活了相互抑制,但不能激活横向抑制。来自多个BC的输出对于激活侧向抑制是必不可少的。药理学检查显示,两种抑制途径之间的递质受体组成和Na +通道的定位不同,表明不同的无长突细胞可能介导每种抑制作用。根据视觉输入,每个抑制都可以独立驱动。模型仿真表明,相互和横向抑制共同降低了BC输出以及背景噪声,从而保持了较高的信噪比。因此,我们得出结论,兴奋性BC输出受到反馈抑制的双重操作机制的有效调节,而不会降低视觉信号的质量。

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