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雪貂视网膜神经节细胞的形态、中枢投射及树突野方向

Morphology, central projections, and dendritic field orientation of retinal ganglion cells in the ferret.

作者信息

Vitek D J, Schall J D, Leventhal A G

出版信息

J Comp Neurol. 1985 Nov 1;241(1):1-11. doi: 10.1002/cne.902410102.

Abstract

Retinal ganglion cells were studied in pigmented ferrets that received small electrophoretic injections of horseradish peroxidase (HRP) into the dorsal lateral geniculate nucleus (LGNd) or optic tract. Ferret retina contains a number of types of retinal ganglion cells of which the relative cell body sizes, dendritic field structures, and central projections correspond closely to those of retinal ganglion cell types in the cat. Ferret retina contains about the same proportion of alphalike cells, a lower proportion of betalike cells, and thus a high proportion of other types of ganglion cells than cat retina. Ferret retina has a visual streak and somewhat weaker area centralis than cat retina. Changes in ganglion cell morphology associated with eccentricity are less pronounced in the ferret than in the cat. The adult ferret retina is about 12.5 mm in diameter, and the nasotemporal division is about 2.7 mm from the temporal margin. Interestingly, virtually all alpha cells in the pigmented ferrets studied projected contralaterally. Studies of infant ferrets indicate that 4 days after birth (P4) the area of ferret retina is 25% that of the adult. The neonatal ferret retina contains numerous small, densely packed cells in the presumptive ganglion cell layer. At P4 these cells appear to be uniformly distributed across the retina. The area centralis and visual streak are not obvious as late as 8 days after birth.

摘要

在有色雪貂中对视网膜神经节细胞进行了研究,这些雪貂接受了将辣根过氧化物酶(HRP)微量电泳注射到背外侧膝状核(LGNd)或视束中。雪貂视网膜包含多种类型的视网膜神经节细胞,其相对细胞体大小、树突野结构和中枢投射与猫的视网膜神经节细胞类型密切对应。与猫视网膜相比,雪貂视网膜中α样细胞的比例大致相同,β样细胞的比例较低,因此其他类型神经节细胞的比例较高。雪貂视网膜有视觉条纹,且中央凹比猫视网膜稍弱。与离心率相关的神经节细胞形态变化在雪貂中比在猫中不太明显。成年雪貂视网膜直径约为12.5毫米,鼻颞分界距离颞侧边缘约2.7毫米。有趣的是,在所研究的有色雪貂中,几乎所有的α细胞都向对侧投射。对幼龄雪貂的研究表明,出生后4天(P4)雪貂视网膜面积是成年雪貂的25%。新生雪貂视网膜在假定的神经节细胞层中含有许多小的、紧密排列的细胞。在P4时,这些细胞似乎均匀地分布在整个视网膜上。直到出生后8天,中央凹和视觉条纹都不明显。

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