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Dorsal raphe nucleus projecting retinal ganglion cells: Why Y cells?

机译:背沟纹核投射视网膜神经节细胞:为什么是Y细胞?

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摘要

Retinal ganglion Y (alpha) cells are found in retinas ranging from frogs to mice to primates. The highly conserved nature of the large, fast conducting retinal Y cell is a testament to its fundamental task, although precisely what this task is remained ill-defined. The recent discovery that Y-alpha retinal ganglion cells send axon collaterals to the serotonergic dorsal raphe nucleus (DRN) in addition to the lateral geniculate nucleus (LGN), medial interlaminar nucleus (MIN), pretectum and the superior colliculus (SC) has offered new insights into the important survival tasks performed by these cells with highly branched axons. We propose that in addition to its role in visual perception, the Y-alpha retinal ganglion cell provides concurrent signals via axon collaterals to the DRN, the major source of serotonergic afferents to the forebrain, to dramatically inhibit 5-HT activity during orientation or alerting/escape responses, which dis-facilitates ongoing tonic motor activity while dis-inhibiting sensory information processing throughout the visual system. The new data provide a fresh view of these evolutionarily old retinal ganglion cells.
机译:在从青蛙到小鼠再到灵长类动物的视网膜中都发现了视网膜神经节Y(alpha)细胞。大型,快速传导的视网膜Y细胞的高度保守性证明了其基本任务,尽管确切地说,该任务的含义仍然不确定。最近发现,除了外侧膝状核(LGN),内侧层间核(MIN),前额叶和上丘(SC)外,Y-alpha视网膜神经节细胞还向轴突旁神经核(DRN)发送轴突侧支。对这些细胞与高度分支的轴突执行的重要存活任务的新见解。我们建议,除了其在视觉感知中的作用外,Y-alpha视网膜神经节细胞还通过轴突侧支向DRN(前脑的血清素能传入的主要来源)提供并发信号,以显着抑制定向或警觉过程中的5-HT活性。 /逃逸响应,这会阻碍正在进行的强直性运动活动,同时会抑制整个视觉系统中的感官信息处理。新数据为这些进化上较旧的视网膜神经节细胞提供了新的视角。

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