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成年金鱼视神经和视束的视网膜定位及时间组织

Retinotopic and temporal organization of the optic nerve and tracts in the adult goldfish.

作者信息

Bunt S M

出版信息

J Comp Neurol. 1982 Apr 10;206(3):209-26. doi: 10.1002/cne.902060302.

Abstract

In order to investigate the role of the different factors controlling the pathways and termination sites of growing axons, selected optic fibers were traced from the eye to the tectum in adult goldfish either by filling them with HRP, or by severing a group of fibers and tracing their degeneration in 2 micrometers plastic sections stained with toluidine blue. Some fish received more than one lesion and others received both lesions and HRP applications. Two major rearrangements of the optic fibers were identified, one at the exit from the eye, the other within the optic tracts. Near the eye the optic fibers appear to be guided by the conformation of the underlying tissue planes that they encounter. The most recently added fibers, from the peripheral retina, grow over the vitread surface of the older fibers toward the blood vessel in the center of the optic nerve head. Behind the eye the fibers follow this blood vessel until it leaves the side of the optic nerve, and the fibers from peripheral retina are left as a single group on the ventral edge of the optic nerve cross section. As a consequence of this pattern of fiber growth the fibers form an orderly temporal sequence in the optic nerve, with the oldest fibers from the central retina on one side of the nerve and the youngest from peripheral retina on the other. In addition, the fibers are ordered topographically at right angles to this central-to-peripheral axis, with fibers from ventral retina on each edge of the nerve, dorsal fibers in the center, and nasal and temporal fibers in between. This arrangement of the optic fibers continues with only a little loss of precision up to the optic tracts. A more radical fiber rearrangement, seemingly incompatible with the fibers simply following tissue planes occurs within the optic tracts. Each newly arriving set of fibers grows over the surface of the optic tracts so that the older fibers come to lie deepest in the tracts. This segregation of fibers of different ages ensures that the rearrangement is limited to each layer of fibers. The abrupt reorganization of the fibers occurs as the tracts split around the nucleus rotundus to form the brachia of the optic tracts. The fibers are then arranged with temporal fibers nearest the nucleus rotundus and nasal fibers on the opposite edges of the brachia. From this point the fibers grow out over the tectal surface to their termination sites with only minimal rearrangements. Therefore the optic fiber rearrangements show evidence of several different sorts of constraints acting on the fibers at separate points in the optic pathway, each contributing to the final orderly arrangement of the fibers on the optic tectum.

摘要

为了研究控制生长轴突的途径和终止位点的不同因素所起的作用,在成年金鱼中,通过用辣根过氧化物酶(HRP)填充选定的视神经纤维,或者切断一组纤维并追踪其在经甲苯胺蓝染色的2微米塑料切片中的变性情况,将视神经纤维从眼睛追踪到视顶盖。一些鱼接受了不止一处损伤,另一些鱼既接受了损伤又进行了HRP注射。确定了视神经纤维的两种主要重排,一种发生在从眼睛出来的部位,另一种发生在视束内。在眼睛附近,视神经纤维似乎是由它们所遇到的下方组织平面的形态引导的。来自周边视网膜的最新添加的纤维,在较老纤维的玻璃体表面朝着视神经乳头中心的血管生长。在眼睛后方,纤维沿着这条血管直到它离开视神经的一侧,来自周边视网膜的纤维作为一组留在视神经横截面的腹侧边缘。由于这种纤维生长模式,纤维在视神经中形成了有序的时间序列,来自中央视网膜的最老纤维在神经的一侧,来自周边视网膜的最年轻纤维在另一侧。此外,纤维在与这个从中央到周边的轴成直角的方向上按地形排列,来自腹侧视网膜的纤维在神经的每条边缘,背侧纤维在中央,鼻侧和颞侧纤维在两者之间。这种视神经纤维的排列一直持续到视束,精度仅有少量损失。在视束内发生了一种更彻底的纤维重排,这似乎与纤维仅仅沿着组织平面生长的情况不相符。每组新到达的纤维在视束表面生长,使得较老的纤维最终位于视束的最深处。不同年龄纤维的这种分离确保了重排仅限于每层纤维。纤维的突然重组发生在视束围绕圆核分裂以形成视束臂时。然后纤维排列成颞侧纤维最靠近圆核,鼻侧纤维在视束臂的相对边缘。从这一点开始,纤维在视顶盖表面生长到它们的终止位点,只有最小程度的重排。因此,视神经纤维的重排显示出在视神经通路的不同点上有几种不同类型的约束作用于纤维的证据,每种约束都有助于纤维最终在视顶盖上的有序排列。

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