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Establishing Wiring Specificity in Visual System Circuits: From the Retina to the Brain
Annual Review of Neuroscience ( IF 13.9 ) Pub Date : 2017-08-03 00:00:00 , DOI: 10.1146/annurev-neuro-072116-031607
Chi Zhang 1 , Alex L. Kolodkin 2 , Rachel O. Wong 1 , Rebecca E. James 2
Affiliation  

The retina is a tremendously complex image processor, containing numerous cell types that form microcircuits encoding different aspects of the visual scene. Each microcircuit exhibits a distinct pattern of synaptic connectivity. The developmental mechanisms responsible for this patterning are just beginning to be revealed. Furthermore, signals processed by different retinal circuits are relayed to specific, often distinct, brain regions. Thus, much work has focused on understanding the mechanisms that wire retinal axonal projections to their appropriate central targets. Here, we highlight recently discovered cellular and molecular mechanisms that together shape stereotypic wiring patterns along the visual pathway, from within the retina to the brain. Although some mechanisms are common across circuits, others play unconventional and circuit-specific roles. Indeed, the highly organized connectivity of the visual system has greatly facilitated the discovery of novel mechanisms that establish precise synaptic connections within the nervous system.

中文翻译:


在视觉系统电路中建立布线特异性:从视网膜到大脑

视网膜是一个极其复杂的图像处理器,包含许多细胞类型,这些细胞类型形成对视觉场景的不同方面进行编码的微电路。每个微电路表现出不同的突触连接模式。负责这种模式的发展机制才刚刚开始被揭示。此外,由不同的视网膜回路处理的信号被中继到特定的,通常是截然不同的大脑区域。因此,许多工作集中在理解将视网膜轴突投射连接到其适当的中心靶标的机制。在这里,我们重点介绍了最近发现的细胞和分子机制,它们共同沿着从视网膜内到大脑的视觉路径塑造定型的布线模式。尽管某些机制在电路中很常见,其他人则扮演非常规和特定于电路的角色。确实,视觉系统的高度组织化的连通性极大地促进了在神经系统内建立精确的突触连接的新颖机制的发现。

更新日期:2017-08-03
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