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Temporal properties of dual-peak responses of mouse retinal ganglion cells and effects of inhibitory pathways

机译:小鼠视网膜神经节细胞双峰反应的时间特性和抑制途径的影响

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Dual-peak responses of retinal ganglion cells (RGCs) are observed in various species, previous researches suggested that both response peaks were involved in retinal information coding. In the present study, we investigated the temporal properties of the dual-peak responses recorded in mouse RGCs elicited by spatially homogeneous light flashes and the effect of the inhibitory inputs mediated by GABAergic and/or glycinergic pathways. We found that the two peaks in the dual-peak responses exhibited distinct temporal dynamics, similar to that of short-latency and long-latency single-peak responses respectively. Pharmacological studies demonstrated that the application of exogenous GABA or glycine greatly suppressed or even eliminated the second peak of the cells' firing activities, while little change was induced in the first peak. Co-application of glycine and GABA led to complete elimination of the second peak. Moreover, application of picrotoxin or strychnine induced dual-peak responses in some cells with transient responses by unmasking a second response phase. These results suggest that both GABAergic and glycinergic pathways are involved in the dual-peak responses of the mouse RGCs, and the two response peaks may arise from distinct pathways that would converge on the ganglion cells.
机译:视网膜神经节细胞(RGCs)的双峰反应观察到各种物种,以前的研究表明,两个反应峰都参与视网膜信息编码。在本研究中,我们调查了由空间均匀闪光引起的小鼠RGC中记录的双峰反应的时间特性,以及由GABA能和/或甘氨酸能途径介导的抑制性输入的作用。我们发现双峰响应中的两个峰表现出明显的时间动态,分别类似于短等待时间和长等待时间的单峰响应。药理研究表明,外源性GABA或甘氨酸的应用极大地抑制甚至消除了细胞激发活性的第二个峰,而第一个峰几乎没有变化。甘氨酸和GABA的共同应用导致第二个峰的完全消除。此外,通过揭露第二反应阶段,在一些具有瞬时反应的细胞中,应用微毒素或士的宁诱导了双峰反应。这些结果表明,小鼠RGC的双峰反应均涉及GABA能和甘氨酸能途径,并且两个反应峰可能来自会聚集在神经节细胞上的不同途径。

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