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Diversity of intrinsically photosensitive retinal ganglion cells: circuits and functions

机译:内在光敏视网膜神经节细胞的多样性:电路和功能

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摘要

The melanopsin-expressing, intrinsically photosensitive retinal ganglion cells (ipRGCs) are a relatively recently discovered class of atypical ganglion cell photoreceptor. These ipRGCs are a morphologically and physiologically heterogeneous population that project widely throughout the brain and mediate a wide array of visual functions ranging from photoentrainment of our circadian rhythms, to driving the pupillary light reflex to improve visual function, to modulating our mood, alertness, learning, sleep/wakefulness, regulation of body temperature, and even our visual perception. The presence of melanopsin as a unique molecular signature of ipRGCs has allowed for the development of a vast array of molecular and genetic tools to study ipRGC circuits. Given the emerging complexity of this system, this review will provide an overview of the genetic tools and methods used to study ipRGCs, how these tools have been used to dissect their role in a variety of visual circuits and behaviors in mice, and identify important directions for future study.
机译:表达黑素视素的内在光敏性视网膜神经节细胞(ipRGCs)是最近发现的一类非典型神经节细胞光感受器。这些IPRGC是一个形态和生理上的异质群体,广泛投射到大脑中,并介导多种视觉功能,从昼夜节律的光诱导,到驱动瞳孔光反射以改善视觉功能,到调节我们的情绪、警觉、学习、睡眠/觉醒、体温调节,甚至我们的视觉感知。黑视素作为ipRGC的一种独特分子标志物的存在,为研究ipRGC回路开发了大量的分子和遗传学工具。鉴于该系统的复杂性,本综述将概述用于研究ipRGCs的遗传工具和方法,以及这些工具如何被用于剖析它们在小鼠各种视觉回路和行为中的作用,并确定未来研究的重要方向。

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