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Retinal Input Influences the Size and Corticocortical Connectivity of Visual Cortex During Postnatal Development in the Ferret

机译:视网膜输入影响的大小和视觉皮层Corticocortical连接胚后发育的过程中鼬

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摘要

Retinal input plays an important role in the specification of topographically organized circuits and neuronal response properties, but the mechanism and timing of this effect is not known in most species. A system that shows dramatic dependence on retinal influences is the interhemispheric connection through the corpus callosum. Using ferrets, we analyzed the extent to which development of the visual callosal pattern depends on retinal influences, and explored the period during which these influences are required for normal pattern formation. We studied the mature callosal patterns in normal ferrets and in ferrets bilaterally enucleated (BE) at postnatal day 7 (P7) or P20. Callosal patterns were revealed in tangential sections from unfolded and flattened brains following multiple injections of horseradish peroxidase in the opposite hemisphere. We also estimated the effect of enucleation on the surface areas of striate and extrastriate visual cortex by using magnetic resonance imaging (MRI) data from intact brains. In BEP7 ferrets we found that the pattern of callosal connections was highly anomalous and the sizes of both striate and extrastriate visual cortex were significantly reduced. In contrast, enucleation at P20 had no significant effect on the callosal pattern, but it still caused a reduction in the size of striate and extrastriate visual cortex. Finally, retinal deafferentation had no significant effect on the number of visual callosal neurons. These results indicate that the critical period during which the eyes influence the development of callosal patterns, but not the size of visual cortex, ends by P20 in the ferret.
机译:视网膜输入在拓扑结构的电路和神经元反应性质的规范中起重要作用,但这种效果的机制和时间在大多数物种中都不知道。显示对视网膜影响的戏剧性依赖性的系统是通过语料库胼um的间歇性连接。使用雪貂,我们分析了视觉调味模式的发展的程度取决于视网膜影响,并探索了正常模式形成所需的这些影响的时间。我们研究了正常雪貂的成熟愈伤措施,以及在后期7(p7)或p20的后双侧引发的雪貂。在相反的半球中多次注射辣根过氧化物后,在展开和扁平的大脑中的切向部分揭示了调用模式。我们还通过使用完整的大脑中的磁共振成像(MRI)数据,估计enucleation对条纹表面区域的影响和壳体视觉皮层。在BEP7雪貂中,我们发现调用连接的模式是高度异常的,条纹和壳体视觉皮层的尺寸显着降低。相反,P20的enucleation对调用模式没有显着影响,但它仍然导致条纹和壳体视觉皮层的尺寸减小。最后,视网膜Deafferentation对视觉调用神经元的数量没有显着影响。这些结果表明,眼睛影响调用模式的发展的关键时期,但不是视觉皮质的大小,通过雪貂中的P20结束。

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