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视交叉处简单和复杂的视网膜神经节细胞轴突重排。

Simple and complex retinal ganglion cell axonal rearrangements at the optic chiasm.

作者信息

Springer A D, Mednick A S

出版信息

J Comp Neurol. 1986 May 8;247(2):233-45. doi: 10.1002/cne.902470208.

Abstract

The rearrangements that retinal ganglion cell (RGC) axons undergo near the optic chiasm were determined by ablating either the nasal, temporal, dorsal, ventral, or peripheral retina. The axons of the remaining intact RGCs were then labelled with cobaltous lysine. RGC axons change their relationship with respect to the axes of the brain and with respect to one another. Toward the caudal end of the optic chiasm, the optic tract begins to rotate axially such that its rostral edge ultimately becomes located medially. Thereby, the column of ventronasal RGC axons shifts from a rostral to a medical position. In addition, columns of axons from other retinal sectors move with respect to one another. Ventrotemporal RGC axons, located initially at the caudal edge of the tract, move toward and come to be positioned laterally to, the column of ventronasal RGC axons. The column of dorsonasal RGC axons moves from the rostral to the lateral side of the column of dorsotemporal RGC axons. Concurrently, the axons within each column reorganize internally. Each chronological lamina of axons within a column twists such that the nasal and temporal axons within each column invert their positions with respect to the edges of the column. All of these reorganizations take place between the caudal end of the optic chiasm and the division of the main optic tract into the optic brachia. Furthermore, the rearrangements that occur do not involve any alterations in the positions of central and peripheral RGC axons with respect to the surface of the diencephalon. The results are discussed with respect to mechanisms that might influence the organization of the visual pathways.

摘要

通过切除鼻侧、颞侧、背侧、腹侧或周边视网膜,确定视网膜神经节细胞(RGC)轴突在视交叉附近所经历的重排。然后用赖氨酸钴标记剩余完整RGC的轴突。RGC轴突改变了它们相对于脑轴以及彼此之间的关系。在视交叉的尾端,视束开始轴向旋转,使其头端边缘最终位于内侧。由此,腹鼻侧RGC轴突柱从头部位置移至内侧位置。此外,来自其他视网膜区域的轴突柱也相互移动。最初位于视束尾端边缘的颞腹侧RGC轴突向腹鼻侧RGC轴突柱移动并最终位于其外侧。背鼻侧RGC轴突柱从背颞侧RGC轴突柱的头端移至外侧。同时,每一列内的轴突在内部重新组织。一列内按时间顺序排列的每层轴突发生扭曲,使得每列内的鼻侧和颞侧轴突相对于列边缘反转其位置。所有这些重排都发生在视交叉的尾端与主视束分为视臂之间。此外,所发生的重排并不涉及中枢和外周RGC轴突相对于间脑表面位置的任何改变。针对可能影响视觉通路组织的机制对结果进行了讨论。

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