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首页> 外文期刊>Neuron >Development of precise maps in visual cortex requires patterned spontaneous activity in the retina.
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Development of precise maps in visual cortex requires patterned spontaneous activity in the retina.

机译:视觉皮层中精确地图的发展需要视网膜中有图案的自发活动。

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The visual cortex is organized into retinotopic maps that preserve an orderly representation of the visual world, achieved by topographically precise inputs from the lateral geniculate nucleus. We show here that geniculocortical mapping is imprecise when the waves of spontaneous activity in the retina during the first postnatal week are disrupted genetically. This anatomical mapping defect is present by postnatal day 8 and has functional consequences, as revealed by optical imaging and microelectrode recording in adults. Pharmacological disruption of these retinal waves during the first week phenocopies the mapping defect, confirming both the site and the timing of the disruption in neural activity responsible for the defect. Analysis shows that the geniculocortical miswiring is not a trivial or necessary consequence of the retinogeniculate defect. Our findings demonstrate that disrupting early spontaneous activity in the eye alters thalamic connections to the cortex.
机译:视觉皮层被组织成视网膜视点图,该图保留了视觉世界的有序表示,这是通过从外侧膝状核的地形精确输入获得的。我们在这里显示,当产后第一周视网膜中的自发活动波被基因破坏时,基因球囊定位是不精确的。正如成人的光学成像和微电极记录所揭示的那样,这种解剖学上的映射缺陷在出生后的第8天出现,并且具有功能性后果。这些视网膜波的药理学破坏在第一周表型缺陷,表明了造成缺陷的神经活动的部位和时间。分析表明,基因球菌的错误接线不是视网膜素缺陷的琐碎或必要的后果。我们的发现表明,破坏眼睛的早期自发活动会改变丘脑与皮质的连接。

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