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猫视神经中视网膜膝状体投射纤维的走行

Course of retinogeniculate projection fibers in the cat optic nerve.

作者信息

Naito J

出版信息

J Comp Neurol. 1986 Sep 15;251(3):376-87. doi: 10.1002/cne.902510308.

Abstract

The fiber courses of the cat optic nerve were studied by using wheat germ agglutinin conjugated to horseradish peroxidase (WGA-HRP), which was iontophoretically applied to electrophysiologically defined positions in the lateral geniculate nucleus (LGN). Grossly, there were two distinct bends along the length of the optic nerve. The ventrally flexing anterior bend was located approximately 2 mm from the eyeball, while the dorsally flexing posterior bend was found at some 6 mm distant. The optic nerve fibers showed a tendency to scatter toward the chiasm. At the optic nerve head, the fibers from the different retinal areas maintained the retinal topography in a simplified form according to the trajectory of optic fibers surrounding the optic disc. Between the anterior and posterior bends, the fibers from the pericentral, middle-temporal, and most upper areas of the dorsal retina migrated ventrally and were arranged in the middle of the lateral, middle, and medial parts of the optic nerve, respectively, while fibers from the middle-temporal area of the ventral retina migrated dorsally and scattered into the lateral half. The fibers from the temporal and nasal horizontal meridian areas tended to hold their respective positions in the lateral and medial halves of the optic nerve. As a result, in this level they displayed a complex retinotopy in that the fibers from each part of the retina were mixed. Passing the posterior bend, as the optic nerve proceeded toward the chiasm, the characteristic pattern became less defined. Near the chiasm, the retinotopy became very scattered, showing a partial dorsoventral inversion of the retinal topography with substantial overlapping. It was noted from the present findings that the fibers from ventral retina scattered more quickly than the fibers from the dorsal retina, which tended to hold their grouping until the anterior bend, but the central or pericentral retinal fibers proceeded without significant scatter as far as the posterior bend. The analysis of labelled ganglion cells suggested that even if fibers that arise from one certain "mode" of ganglion cells are selected, it is unlikely that they maintain their initial fiber topography along the entire length of the optic nerve.

摘要

通过将与辣根过氧化物酶结合的小麦胚凝集素(WGA-HRP)离子电渗法施加到外侧膝状体核(LGN)中电生理确定的位置,研究了猫视神经的纤维走向。从整体上看,视神经全长有两个明显的弯曲。腹侧弯曲的前弯位于距眼球约2毫米处,而背侧弯曲的后弯则在约6毫米远处。视神经纤维有向视交叉散开的趋势。在视神经乳头处,来自不同视网膜区域的纤维根据围绕视盘的视神经纤维轨迹以简化形式保持视网膜拓扑结构。在前弯和后弯之间,来自背侧视网膜中央周围、颞中部和最上部区域的纤维向腹侧迁移,并分别排列在视神经外侧、中间和内侧部分的中间,而来自腹侧视网膜颞中部区域的纤维向背侧迁移并散布到外侧半部分。来自颞侧和鼻侧水平子午线区域的纤维倾向于在视神经的外侧和内侧半部分保持各自的位置。因此,在这个层面上它们呈现出复杂的视网膜拓扑结构,即来自视网膜各部分的纤维相互混合。通过后弯后,随着视神经向视交叉延伸,特征模式变得不那么清晰。在视交叉附近,视网膜拓扑结构变得非常分散,显示出视网膜拓扑结构的部分背腹倒置且有大量重叠。从目前的研究结果可以看出,腹侧视网膜的纤维比背侧视网膜的纤维散射得更快,背侧视网膜的纤维在前弯之前倾向于保持其分组,但中央或中央周围视网膜纤维在后弯之前一直没有明显的散射而继续前行。对视神经节细胞的分析表明,即使选择来自某一种特定“模式”的神经节细胞的纤维,它们也不太可能在视神经的整个长度上保持其初始的纤维拓扑结构。

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