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沙袋鼠(尤金袋鼠,Macropus eugenii)视网膜-视顶盖投射的早期发育阶段:视网膜中神经节细胞的分布及其轴突在上丘中的分布。

The initial stages of development of the retinocollicular projection in the wallaby (Macropus eugenii): distribution of ganglion cells in the retina and their axons in the superior colliculus.

作者信息

Ding Y, Marotte L R

机构信息

Developmental Neurobiology Group, Research School of Biological Sciences, Australian National University, Canberra.

出版信息

Anat Embryol (Berl). 1996 Sep;194(3):301-17. doi: 10.1007/BF00187141.

Abstract

The time course of ingrowth of retinal projections to the superior colliculus in the marsupial mammal, the wallaby (Macropus eugenii), was determined by anterograde labelling of axons from the eye with horseradish peroxidase, from birth to 46 days, when axons cover the colliculus contralaterally and ipsilaterally. The position of retinal ganglion cells giving rise to these projections over this period was determined in fixed tissue by retrograde labelling from the colliculus with a carbocyanine dye. Axons first reach the rostrolateral contralateral colliculus 4 days after birth and extend caudally and medially, reaching the caudal pole at 18 days and the far caudomedial pole at 46 days. The first contralaterally projecting cells are in the central dorsal and temporal retina, followed by cells in the nasal and finally the ventral retina. They are distributed closer to the periphery with increasing age. The first sign of a visual streak appears by 18 days. Axons reach the ipsilateral colliculus a day later than contralateral axons and come from a similar region of the retina. The sparser ipsilateral projection reaches the caudal and medial collicular margins by 46 days but by 16-18 days, ganglion cells giving rise to this transient projection are already concentrated in the temporoventral retina. The orderly recruitment of ganglion cells from retinotopically appropriate regions of the retina as axons advance across the contralateral colliculus suggests that the projection is topographically ordered from the beginning. The ipsilateral projection is less ordered as cells are located in the temporoventral crescent at a time when their axons are still transiently covering the colliculus prior to becoming restricted to the rostral colliculus. Features of mature retinal topography such as the visual streak and the location of ipsilaterally projecting cells begin to be established very early in development, before the period of ganglion cell loss and long before eye opening at 140 days.

摘要

通过用辣根过氧化物酶对出生至46天的袋貂(尤金袋鼠,Macropus eugenii)眼睛的轴突进行顺行标记,确定了视网膜投射至中脑上丘的生长时间进程,此时轴突已覆盖对侧和同侧上丘。通过用一种羰花青染料对固定组织中的上丘进行逆行标记,确定了在此期间产生这些投射的视网膜神经节细胞的位置。轴突在出生后4天首次到达对侧上丘的 rostrolateral 部位,并向尾侧和内侧延伸,在18天时到达尾极,在46天时到达远尾内侧极。最早向对侧投射的细胞位于中央背侧和颞侧视网膜,随后是鼻侧视网膜的细胞,最后是腹侧视网膜的细胞。随着年龄增长,它们分布得更靠近周边。到18天时出现了视觉条纹的最初迹象。轴突到达同侧上丘的时间比对侧轴突晚一天,且来自视网膜的相似区域。到46天时,较稀疏的同侧投射到达尾侧和内侧上丘边缘,但到16 - 18天时,产生这种短暂投射的神经节细胞已集中在颞腹侧视网膜。随着轴突穿过对侧上丘,从视网膜上视网膜拓扑学上合适区域有序招募神经节细胞,这表明该投射从一开始就是拓扑有序的。同侧投射的有序性较差,因为此时细胞位于颞腹侧新月区,而它们的轴突在局限于上丘头端之前仍短暂覆盖着上丘。成熟视网膜拓扑结构的特征,如视觉条纹和同侧投射细胞的位置,在发育早期就开始形成,早于神经节细胞丢失期,且远早于140天睁眼期。

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