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A Systems-Based Dissection of Retinal Inputs to the Zebrafish Tectum Reveals Different Rules for Different Functional Classes during Development

机译:斑马鱼直肠的视网膜输入的基于系统的解剖揭示了发育过程中不同功能类别的不同规则

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摘要

We have examined the form, diversity, and organization of three functional classes of retinal inputs to the zebrafish optic tectum during development. Our systems-based approach was to analyze data from populations of retinal ganglion cells labeled with a presynaptic targeted calcium indicator, synaptophysin GCaMP3 (SyGCaMP3). Collectively, our findings provide an insight as to the degree of visual encoding during retino-tectal development and how it dynamically evolves from a nascent and noisy presynaptic neural-scape to an increasingly complex and refined representation. We report five key features: (1) direction-selective inputs are developmentally invariant; (2) orientation-selective inputs exhibit highly dynamic properties over the same period, with changes in their functional characteristics and spatial organization; (3) inputs defined as anisotropic are an early dominant functional class, with heterogeneous response profiles, which progressively diminish in incidence and spatial extent; (4) dark rearing selectively affects the orientation-selective responses: both functional characteristics and relative spatial distributions; and (5) orientation-selective inputs exhibit four subtypes, two more than previously identified in any species. Our approach was to label RGC axon terminals with an indicator of activity and quantitatively characterize coherent response properties to different visual stimuli. Its application in the zebrafish, given its small size and the accessibility of the tectum, has enabled a quick yet robust assessment of multiple functional populations of responses.
机译:我们已经检查了在发育过程中向斑马鱼视神经支架的三种功能性视网膜输入的形式,多样性和组织。我们基于系统的方法是分析以突触前靶向钙指示剂突触素GCaMP3(SyGCaMP3)标记的视网膜神经节细胞群体的数据。总的来说,我们的发现提供了关于视网膜-顶盖发育过程中的视觉编码程度及其如何从新生的,嘈杂的突触前神经突触动态演变为日益复杂和精致的表示的见解。我们报告了五个主要特征:(1)方向选择输入在发展上是不变的; (2)方向选择输入在同一时期表现出高度的动态特性,其功能特征和空间组织有所变化; (3)定义为各向异性的输入是早期的主导功能类,具有异质的响应配置文件,其发生率和空间范围逐渐减小; (4)暗养选择性地影响方向选择性反应:功能特性和相对空间分布; (5)方向选择输入具有四个亚型,比以前在任何物种中识别出的亚型多两个。我们的方法是用活性指示剂标记RGC轴突末端,并定量表征对不同视觉刺激的连贯响应特性。鉴于其体积小且可接近顶盖,它在斑马鱼中的应用使得能够快速而稳健地评估多种功能反应种群。

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