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胎儿雪貂视神经纤维层和神经中视网膜神经节细胞轴突的组织

Organization of retinal ganglion cell axons in the optic fiber layer and nerve of fetal ferrets.

作者信息

Fitzgibbon T, Reese B E

机构信息

Department of Clinical Ophthalmology, University of Sydney, NSW, Australia.

出版信息

Vis Neurosci. 1996 Sep-Oct;13(5):847-61. doi: 10.1017/s095252380000910x.

Abstract

Previous authors have hypothesized that retinotopic projections may be influenced by 'preordering' of the axons as they grow towards their targets. In some nonmammalian species, axons are reorganized at or near the optic nerve head to establish a retinotopic order. Data are ambiguous concerning the retinotopy of the mammalian retinal nerve fiber layer and whether fibers become reorganized at the optic nerve head. We have examined this question in fetal and newborn ferrets (Mustela putorius furo) by comparing the arrangement of axons in the retinal nerve fiber layer with that in the optic nerve. Dil or DiA crystals were implanted into fixed tissue in the innermost layers of the retinal periphery, or at a location midway between the periphery and the optic nerve head. Fluorescence labelling was examined in 100-200 microns Vibratome sections, or the eyecup and nerve were photooxidized and 1-2 microns longitudinal or transverse sections were examined. Regardless of fetal age, eccentricity or quadrant of the implant site, a segregation of labelled peripheral axons from unlabelled central ones was not detected within the nerve fiber layer. Axons coursed into the nerve head along the margin of their retinal quadrant of origin, often entering the optic nerve as a radial wedge, thus preserving a rough map of retinal circumference. However, peripheral axons were in no way restricted to the peripheral (nor central) portions of the nerve head or nerve, indicating that the optic axons do not establish a map of retinal eccentricity. Our results demonstrate that (1) the nerve fiber layer is retinotopic only with respect to circumferential position and (2) optic axons are not actively reorganized to establish a retinotopic ordering at the nerve head. The present results suggest that any degree of order present within the optic nerve is a passive consequence of combining the fascicles of the retinal nerve fiber layer; optic axons are not instructed to establish, nor constrained to maintain, a retinotopic order within the optic nerve.

摘要

先前的作者推测,视网膜拓扑投射可能会受到轴突在向其目标生长过程中的“预排序”影响。在一些非哺乳动物物种中,轴突在视神经乳头处或其附近进行重新组织,以建立视网膜拓扑顺序。关于哺乳动物视网膜神经纤维层的视网膜拓扑以及纤维是否在视神经乳头处重新组织,数据并不明确。我们通过比较视网膜神经纤维层与视神经中轴突的排列情况,对胎儿和新生雪貂(Mustela putorius furo)的这个问题进行了研究。将Dil或DiA晶体植入视网膜周边最内层的固定组织中,或植入周边与视神经乳头之间的中点位置。在100 - 200微米的振动切片机切片中检查荧光标记,或者对视杯和神经进行光氧化处理,并检查1 - 2微米的纵向或横向切片。无论植入部位的胎龄、离心率或象限如何,在神经纤维层内均未检测到标记的周边轴突与未标记的中央轴突分离。轴突沿着其起源的视网膜象限边缘进入神经乳头,通常以放射状楔形进入视神经,从而保留了视网膜周长的大致图谱。然而,周边轴突绝不限于神经乳头或神经的周边(或中央)部分,这表明视神经轴突并未建立视网膜离心率图谱。我们的结果表明:(1)神经纤维层仅在圆周位置方面是视网膜拓扑的;(2)视神经轴突不会主动重新组织以在神经乳头处建立视网膜拓扑顺序。目前的结果表明,视神经内存在的任何程度的顺序都是视网膜神经纤维层束合并的被动结果;视神经轴突未被指示建立,也未被限制维持视神经内的视网膜拓扑顺序。

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