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胚胎仓鼠的视束:视网膜轴突的成束、解束及其他重排

The optic tract in embryonic hamsters: fasciculation, defasciculation, and other rearrangements of retinal axons.

作者信息

Jhaveri S, Erzurumlu R S, Schneider G E

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Vis Neurosci. 1996 Mar-Apr;13(2):359-74. doi: 10.1017/s0952523800007604.

Abstract

The early development of the optic tract in hamsters was studied by labeling retinal axons with Dil applied to the eye, and then examining the labeled axons in flatmount preparations of the rostral brain stem. This technique permits a panoramic view of the entire retinal projection, from the chiasm to the caudal end of the superior colliculus. In the E11 embryo, retinal axons have reached the chiasm. They defasciculate as they emerge from the nerve, prior to reaching the ventral midline of the diencephalon, then converge again as they pass over to the opposite side. At the midline, many axonal trajectories crisscross, implying some shuffling of relative positions. Retinal axons are tightly bundled within the optic tract. Upon reaching the ventral border of the lateral geniculate body (LGB), they splay out over the nucleus, revealing a wavefront of pioneer axons individually distributed across the rostro-caudal extent of the LGB. Later-emerging retinal axons course over the surface of the thalamus in waves; subsequent waves of axons interdigitate between the lead fibers without fasciculating along them. Past the LGB, the axons undergo a second change in relative positions as the ribbon of fibers swerves caudally, prior to entering the superior colliculus. Retinal axons are tipped with growth cones of varying morphologies. No strong correlation is evident between the structural complexity of the growth cone and its position within the tract. In the majority of cases, ipsilaterally and contralaterally directed axons follow a similar developmental course along the optic tract, without any indication of a temporal lag in the ipsilateral projection as claimed in earlier reports. Understanding the changes in spatial distribution of embryonic retinal axons as they navigate along the optic tract provides a further step towards elucidating how point-to-point projections form in developing sensory systems.

摘要

通过将Dil应用于眼睛来标记视网膜轴突,然后在脑桥前端的整装标本中检查标记的轴突,研究了仓鼠视束的早期发育。该技术可以全景观察从视交叉到上丘尾端的整个视网膜投射。在E11胚胎中,视网膜轴突已到达视交叉。它们在从神经中穿出时散开,在到达间脑腹中线之前,然后在越过到对侧时再次汇聚。在中线处,许多轴突轨迹相互交叉,这意味着相对位置有一些重排。视网膜轴突在视束内紧密成束。到达外侧膝状体(LGB)腹侧边界时,它们在核上展开,显示出先驱轴突的波前分别分布在LGB的前后范围内。较晚出现的视网膜轴突呈波浪状在丘脑表面走行;随后的轴突波在引导纤维之间相互交错,而不沿它们成束。经过LGB后,轴突在进入上丘之前,随着纤维带向尾侧弯曲,其相对位置发生第二次变化。视网膜轴突末端是形态各异的生长锥。生长锥的结构复杂性与其在视束中的位置之间没有明显的强相关性。在大多数情况下,同侧和对侧的轴突沿着视束遵循相似的发育过程,没有任何迹象表明同侧投射存在早期报告中所说的时间延迟。了解胚胎视网膜轴突在沿视束导航时空间分布的变化,为阐明发育中的感觉系统中如何形成点对点投射提供了进一步的步骤。

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