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Nitric oxide as a regulatory molecule in the processing of the visual stimulus

机译:一氧化氮作为视觉刺激过程中的调节分子

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Nitric oxide (NO) is a highly reactive gas with considerable diffusion power that is produced pre- and post synaptically in the central nervous system (CNS). In the visual system, it is involved in the processing of the visual information from the retina to superior visual centers. In this review we discuss the main mechanisms through which nitric oxide acts, in physiological levels, on the retina, lateral geniculate nucleus (LGN) and primary visual cortex. In the retina, the cGMP-dependent nitric oxide activity initially amplifies the signal, subsequently increasing the inhibitory activity, suggesting that the signal is "filtered". In the thalamus, on dLGN, neuronal activity is amplified by NO derived from brainstem cholinergic cells, in a cGMP-independent mechanism; the result is the amplification of the signal arriving from retina. Finally, on the visual cortex (V1), NO acts through changes on the cGMP levels, increasing signal detection. These observations suggest that NO works like a filter, modulating the signal along the visual pathways.
机译:一氧化氮(NO)是具有高扩散能力的高反应性气体,在中枢神经系统(CNS)突触前后产生。在视觉系统中,它涉及从视网膜到上级视觉中心的视觉信息的处理。在这篇综述中,我们讨论了一氧化氮在生理水平上作用于视网膜,外侧膝状核(LGN)和初级视觉皮层的主要机制。在视网膜中,依赖cGMP的一氧化氮活性最初会放大信号,随后增加抑制活性,表明信号已被“过滤”。在丘脑中,在dLGN上,神经元活性以不依赖cGMP的机制被脑干胆碱能细胞中的NO放大。结果是放大了来自视网膜的信号。最后,在视觉皮层(V1)上,NO通过cGMP水平的变化而起作用,从而增强了信号检测能力。这些观察结果表明,NO的作用类似于过滤器,可沿着视觉路径调节信号。

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