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Restricted perinatal retinal degeneration induces retina reshaping and correlated structural rearrangement of the retinotopic map

机译:围产期视网膜变性受限会导致视网膜重塑以及相关的视网膜位图结构重排

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摘要

The formation of the retinotopic map depends on the action of axon guidance molecules, activity-dependent mechanisms and axonal competition. However, little is known about the plasticity potential of the system and the effects on the remodelling of retinocollicular connections upon retinal insults. Here we create a mouse model in which retinal ganglion cells that project to anterior and posterior superior colliculus undergo cell death during topographic map formation. We show that the remaining retinal ganglion cells expand the targeted area in the superior colliculus and at the same time increase their spatial coverage in the retina in a correlated fashion. The resulting contralateral topographic map is overall maintained but less precise, while ipsilateral retinal ganglion cell axons are abnormally distributed in anterior and posterior superficial superior colliculus. These results suggest the presence of plastic mechanisms in the developing mammalian visual system to adjust retinal space and its target coverage and ensure a uniform map.
机译:视网膜位点图的形成取决于轴突引导分子的作用,活性依赖性机制和轴突竞争。然而,关于该系统的可塑性潜力以及对视网膜损伤后视网膜胶体连接重塑的影响知之甚少。在这里,我们创建了一个小鼠模型,其中投影到前和后上丘的视网膜神经节细胞在地形图形成过程中经历了细胞死亡。我们表明,剩余的视网膜神经节细胞扩大了上丘的目标区域,同时以相关的方式增加了它们在视网膜中的空间覆盖率。产生的对侧地形图总体保持不变,但准确性较差,而同侧视网膜神经节细胞轴突则异常分布在前,后浅表上丘。这些结果表明在发展中的哺乳动物视觉系统中存在可调节视网膜空间及其目标覆盖范围并确保获得统一图谱的塑性机制。

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