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首页> 外文期刊>Molecular Neurobiology >Retinal ganglion cell dendritic development and its control. Filling the gaps.
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Retinal ganglion cell dendritic development and its control. Filling the gaps.

机译:视网膜神经节细胞树突状发育及其控制。填补空白。

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摘要

The way in which central neurons acquire their complex and precise dendrite arbors is of considerable developmental interest. Using retinal ganglion cells (RGCs) as a model, the mechanisms that pattern dendritic development are beginning to emerge. As in other systems, final dendrite phenotype is achieved by a mixture of intrinsic and extrinsic determinants. The extrinsic determinants of RGC dendrite shape reflect the anatomical constraints of producing a paracrystalline mosaic of arbors that laminates the inner plexiform layer of the retina. In this article, the key features of RGC dendrite development are reviewed. The emerging molecular mechanisms behind dendritic laminar segregation and "dendritic competition" are described. The role of afferent extrinsic influences are contrasted with those of retrograde, activity-dependent target influences that may regulate the final maturational phase of dendrite remodeling.
机译:中枢神经元获取其复杂而精确的树突状乔木的方式具有相当大的发展兴趣。使用视网膜神经节细胞(RGCs)作为模型,树突状发育模式的机制开始出现。与其他系统一样,最终的树突表型是由内在和外在决定因素混合而成的。 RGC枝晶形状的外在决定因素反映了产生准晶体的心轴镶嵌物的解剖学约束,该镶嵌物层叠了视网膜的内部丛状层。在这篇文章中,RGC枝晶发展的关键特征进行了审查。描述了树突状层分离和“树突状竞争”背后的新兴分子机制。外部传入影响的作用与逆行的,依赖于活动的目标影响的作用相反,后者可能调节枝晶重塑的最终成熟阶段。

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