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Early functional neural networks in the developing retina.

机译:发育中的视网膜的早期功能神经网络。

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In the adult mammalian retina, the principal direction of information flow is along a vertical pathway from photoreceptors to retinal interneurons to ganglion cells, the output neurons of the retina. We report here, however, that initially in development, at a time when the photoreceptors are not yet even present, there are already functionally defined networks within the retina. These networks are spontaneously active rather than visually driven, and they involve horizontal rather than vertical pathways. By means of optical recording using the calcium-sensitive dye Fura-2, we have found that sets of retinal ganglion cells and amacrine cells, a type of retinal interneuron, undergo synchronized oscillations in intracellular calcium concentration. These oscillations are highly correlated among subgroups of neighbouring cells, and spread in a wave-like fashion tangentially across the retina. Thus, in development of retinal circuitry, the initial patterning of neuronal function occurs in the horizontal domain before the adult pattern of vertical information transfer emerges.
机译:在成年哺乳动物的视网膜中,信息流的主要方向是沿着从感光器到视网膜中间神经元再到神经节细胞(视网膜的输出神经元)的垂直路径。但是,我们在这里报告说,最初在开发中,甚至在还没有感光器的时候,视网膜内已经存在功能定义的网络。这些网络是自发活动的,而不是视觉驱动的,它们涉及水平而不是垂直的路径。通过使用钙敏感染料Fura-2进行光学记录,我们发现,视网膜神经节细胞和无长突细胞(一种视网膜中间神经元)的集合在细胞内钙浓度中发生同步振荡。这些振荡在相邻细胞的亚组之间高度相关,并以波状切线方式分布在视网膜上。因此,在视网膜电路的发展中,在垂直信息传输的成人模式出现之前,神经元功能的初始模式发生在水平域中。

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