Trevelyan Andrew J, Upton A L, Cordery Patricia M, Thompson Ian D
Department of Physiology, Anatomy and Genetics, Oxford, UK.
Eur J Neurosci. 2007 Dec;26(11):3277-90. doi: 10.1111/j.1460-9568.2007.05941.x. Epub 2007 Nov 14.
Primary cortical areas normally have a single mapping of the receptor array arising from a 'point-to-point' projection from the thalamus. We show that, for the visual cortex, this simple mapping rule breaks down when retinal input to the thalamus is altered. We utilize the monocular enucleation paradigm, which alters subcortical mappings ipsilateral to the remaining eye. We show that this manipulation produces an altered visuotopic map in area 17 with two separated, mirror-imaged representations of the central visual field. Furthermore, thalamic point-to-point connectivity is dramatically changed. There are now two overlapping geniculocortical projections: the predominant projection maps with apparently normal topography, and a second projection maps with the opposite polarity. The plane of symmetry of the duplicated anatomical projection coincides precisely with the functional map reversal and, notably, geniculocortical magnification factors are identical in the two projections. We suggest that the duplicated, abnormal geniculocortical projection is retinotopically matched to the normal projection. We speculate that aberrant geniculocortical terminals are stabilized because they have coherent activity patterns with topographically normal terminals.
初级皮质区域通常具有由丘脑的“点对点”投射产生的受体阵列的单一映射。我们发现,对于视觉皮质而言,当丘脑的视网膜输入发生改变时,这种简单的映射规则就会失效。我们利用单眼摘除范式,该范式会改变剩余眼睛同侧的皮质下映射。我们发现这种操作会在17区产生改变的视拓扑图,其中中央视野有两个分离的、镜像对称的表征。此外,丘脑的点对点连接性也发生了显著变化。现在有两个重叠的膝状体皮质投射:主要投射的拓扑结构看似正常,而第二个投射的极性相反。复制的解剖学投射的对称平面与功能图反转精确重合,值得注意的是,两个投射中的膝状体皮质放大因子是相同的。我们认为,复制的、异常的膝状体皮质投射在视网膜拓扑上与正常投射相匹配。我们推测,异常的膝状体皮质终末之所以稳定,是因为它们与拓扑结构正常的终末具有连贯的活动模式。