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首页> 外文期刊>Neuron >Spatial-temporal patterns of retinal waves underlying activity-dependent refinement of retinofugal projections.
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Spatial-temporal patterns of retinal waves underlying activity-dependent refinement of retinofugal projections.

机译:视网膜波的时空分布在视网膜下真菌的活动依赖的细化基础上。

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During development, retinal axons project coarsely within their visual targets before refining to form organized synaptic connections. Spontaneous retinal activity, in the form of acetylcholine-driven retinal waves, is proposed to be necessary for establishing these projection patterns. In particular, both axonal terminations of retinal ganglion cells (RGCs) and the size of receptive fields of target neurons are larger in mice that lack the beta2 subunit of the nicotinic acetylcholine receptor (beta2KO). Here, using a large-scale, high-density multielectrode array to record activity from hundreds of RGCs simultaneously, we present analysis of early postnatal retinal activity from both wild-type (WT) and beta2KO retinas. We find that beta2KO retinas have correlated patterns of activity, but many aspects of these patterns differ from those of WT retina. Quantitative analysis suggests that wave directionality, coupled with short-range correlated bursting patterns of RGCs, work together to refine retinofugal projections.
机译:在发育过程中,视网膜轴突在其视觉目标内粗略突出,然后精炼以形成有组织的突触连接。提出以乙酰胆碱驱动的视网膜波形式的自发性视网膜活性对于建立这些投影模式是必需的。特别是,在缺乏烟碱乙酰胆碱受体(beta2KO)的beta2亚基的小鼠中,视网膜神经节细胞(RGCs)的轴突终止和靶神经元的感受野的大小都较大。在这里,使用大规模,高密度的多电极阵列来同时记录数百个RGC的活动,我们目前分析野生型(WT)和beta2KO视网膜的早期产后视网膜活性。我们发现beta2KO视网膜具有相关的活动模式,但这些模式的许多方面与WT视网膜不同。定量分析表明,波的指向性与RGC的短程相关突发模式共同作用,可以完善视网膜视网膜的投影。

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