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首页> 外文期刊>Neuron >Crossover Inhibition Generates Sustained Visual Responses in the Inner Retina
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Crossover Inhibition Generates Sustained Visual Responses in the Inner Retina

机译:交叉抑制在视网膜内产生持续的视觉反应

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摘要

In daylight, the input to the retinal circuit is provided primarily by cone photoreceptors acting as band-pass filters, but the retinal output also contains neuronal populations transmitting sustained signals. Using in vivo imaging of genetically encoded calcium reporters, we investigated the circuits that generate these sustained channels within the inner retina of zebrafish. In OFF bipolar cells, sustained transmission was found to depend on crossover inhibition from the ON pathway through GABAergic amacrine cells. In ON bipolar cells, the amplitude of low-frequency signals was regulated by glycinergic amacrine cells, while GABAergic inhibition regulated the gain of band-pass signals. We also provide the first functional description of a subset of sustained ON bipolar cells in which synaptic activity was suppressed by fluctuations at frequencies above similar to 0.2 Hz. These results map out the basic circuitry by which the inner retina generates sustained visual signals and describes a new function of crossover inhibition.
机译:在白天,视网膜回路的输入主要由充当带通滤波器的圆锥形感光器提供,但视网膜输出还包含传输持续信号的神经元群体。使用基因编码的钙记者体内成像,我们调查了在斑马鱼的内部视网膜内生成这些持续通道的电路。在OFF双极细胞中,发现持续传播取决于通过GABA能的无长突细胞从ON途径的交叉抑制。在ON双极细胞中,低频信号的振幅由甘氨酸能的无长突细胞调节,而GABA能的抑制作用调节带通信号的增益。我们还提供了一个持续性ON双极细胞子集的第一个功能描述,其中突触活性被高于0.2 Hz的频率波动所抑制。这些结果勾画出内部视网膜产生持续视觉信号的基本电路,并描述了交叉抑制的新功能。

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