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大鼠正常和异常的未交叉视网膜顶盖通路:一项针对成年大鼠的辣根过氧化物酶研究

Normal and abnormal uncrossed retinotectal pathways in rats: an HRP study in adults.

作者信息

Lund R D, Land P W, Boles J

出版信息

J Comp Neurol. 1980 Feb 15;189(4):711-20. doi: 10.1002/cne.901890407.

Abstract

Horseradish peroxidase was injected into the superior colliculus of normal pigmented and albino rats and rats which had been unilaterally enucleated at birth, in order to identify the retinal ganglion cells which contribute normal and abnormal uncrossed retinotectal axons. The results show that while in pigmented rats, the normal uncrossed pathway derives solely from the lower temporal retina and distributes to the anterior and medial parts of the colliculus, occasional cells throughout the retina of albino rats contribute to the uncrossed pathway and the terminal distribution is broader in the tectum. These findings are confirmed with orthograde pathway tracing methods. After neonatal unilateral eye enucleation, many more ganglion cells in the remaining eye of both pigmented and albino rats project ipsilaterally. It is notable from both HRP studies and from further degeneration experiments that cells in part of the lower temporal retina do not restrict their distribution to a mirror togographic position in the ipsilateral tectum but send axons across all but the posterolateral part of the colliculus. No single class of ganglion cell (defined by soma diameter) appears responsible for the expanded ipsilateral projection, although more large cells from the lower temporal retina are involved. These may be the result of enlargement of cells with expanded terminal fields rather than necessarily indicating a preferential contribution from one retinal ganglion cell class.

摘要

将辣根过氧化物酶注入正常有色大鼠、白化大鼠以及出生时单侧眼球摘除的大鼠的上丘,以识别那些发出正常和异常未交叉视网膜顶盖轴突的视网膜神经节细胞。结果显示,在有色大鼠中,正常的未交叉通路仅来自颞下视网膜下部,并分布于上丘的前部和内侧部分,而白化大鼠整个视网膜中的一些细胞也参与了未交叉通路,并且其终末分布在上丘更广泛。这些发现通过顺行通路追踪方法得到了证实。新生大鼠单侧眼球摘除后,有色和白化大鼠的健侧眼中都有更多的神经节细胞向同侧投射。从辣根过氧化物酶研究以及进一步的变性实验中值得注意的是,颞下视网膜下部的部分细胞并不将其分布局限于同侧顶盖的镜像拓扑位置,而是将轴突投射到除上丘后外侧部分之外的整个区域。虽然来自颞下视网膜下部的较大细胞参与较多,但似乎没有单一类型的神经节细胞(由胞体直径定义)对同侧投射的扩大负责。这些可能是终末野扩大的细胞增大的结果,而不一定表明某一视网膜神经节细胞类型有优先贡献。

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