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Paths of axons in the visual system of perciform fish and implications of these paths for rules governing axonal growth

机译:视轴鱼类视觉系统中的轴突路径及其对控制轴突生长规则的影响

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摘要

The optic nerve of many perciform fish is ribbon-shaped, and axons from ganglion cells in specific parts of the retina are consistently found in specific places in this ribbon. I utilized this organization to fill selected groups of axons with horseradish peroxidase. I then traced these groups of axons through the nerve and across the tectum to their terminal arbors. The paths of the axons suggest that axons use a number of different mechanisms to guide them to their correct terminal sites. At some points they appear simply to grow along the surface created by earlier axons, but at other points they seem to be using cues more complex than simple mechanical guidance. In addition, I have demonstrated that for every anulus of ganglion cells on the retina there is an anulus of terminal arbors on the tectum. With time the terminals in a given anulus must move caudally to keep the retinotopic map centered on the tectum while the tectum continues growing nonsymmetrically . I have shown both that the anuli of terminals do remain roughly centered on the tectum and that the predicted pattern of terminal movement is visible on the tecta of perciform fish.
机译:许多蛇形鱼的视神经是带状的,并且在该带的特定位置始终可以发现视网膜特定部位神经节细胞的轴突。我利用这个组织为辣根过氧化物酶填充了选定的轴突组。然后,我通过神经并穿过顶盖追踪到了这些轴突组,直到它们的终生轴。轴突的路径表明轴突使用多种不同的机制将其引导至正确的末端位点。在某些情况下,它们似乎只是沿早期轴突产生的表面生长,而在其他方面,它们似乎使用的提示比简单的机械制导更为复杂。此外,我已经证明,视网膜上神经节细胞的每个环带在顶盖上都有一个终末轴环。随着时间的推移,给定环的末端必须向尾端移动,以使视网膜定位图集中在顶盖上,而顶盖继续非对称地生长。我已经表明,终端的无环确实确实保持在顶盖的中心,并且预测的终端运动模式在鲈形鱼类的顶盖上可见。

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