Dreher B, Thong I G, Shameem N, McCall M J
Aust N Z J Ophthalmol. 1985 Aug;13(3):251-61. doi: 10.1111/j.1442-9071.1985.tb00432.x.
At the time when the fibres from the striate cortex (area 17) begin to innervate the superficial layers of the superior colliculus of the young rat (postnatal days 4 and 5) a high degree of specificity in the organization of this newly formed cortico-tectal projection is already apparent. Thus, in young rats, as in adult mammals of virtually all species studied so far, the somata of cortico-tectal neurones are confined to lamina V of the ipsilateral cortex. However, this high degree of laminar (radial) specificity in young animals is accompanied by a substantial degree of exuberance as indicated by a tangential distribution of the cortico-tectal cells which is wider than that in the adult. The exuberant projections are pruned during the second postnatal week. The cortico-cortical associational and commissural fibres start to enter the grey matter of the rat striate cortex after postnatal day 7. Again a high degree of specificity in the laminar distribution of those newly established projections is apparent. However, the cortico-cortical projection, at the time when cortico-cortical fibres enter the cortical laminae, is clearly exuberant since the tangential spread of cortical cells projecting to the striate cortex is wider than that in the adult. Pruning of these excessive projections takes place some time after postnatal day 14. It is believed that understanding the mechanism(s) underlying the development of connections of the rat visual cortex might be of general importance in understanding developmental abnormalities in the pattern of interconnections of the visual cortices of other mammalian orders.
在来自纹状皮质(17区)的纤维开始支配幼鼠(出生后第4天和第5天)上丘浅层时,这个新形成的皮质 - 顶盖投射组织中的高度特异性已经很明显。因此,在幼鼠中,就像在迄今为止研究的几乎所有物种的成年哺乳动物中一样,皮质 - 顶盖神经元的胞体局限于同侧皮质的第V层。然而,幼小动物中这种高度的层状(径向)特异性伴随着相当程度的过度生长,表现为皮质 - 顶盖细胞的切向分布比成年动物更宽。在出生后第二周,过度生长的投射会被修剪。皮质 - 皮质联合纤维和连合纤维在出生后第7天开始进入大鼠纹状皮质的灰质。同样,这些新建立投射的层状分布中高度特异性很明显。然而,在皮质 - 皮质纤维进入皮质层时,皮质 - 皮质投射明显过度生长,因为投射到纹状皮质的皮质细胞的切向扩散比成年动物更宽。这些过多的投射在出生后第14天之后的某个时间进行修剪。人们认为,了解大鼠视觉皮质连接发育的潜在机制可能对理解其他哺乳动物目视觉皮质互连模式的发育异常具有普遍重要性。