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成年帚尾袋鼬(Macropus eugenii)视网膜神经节细胞层中神经元的形态与分布

Morphology and distribution of neurons in the retinal ganglion cell layer of the adult tammar wallaby--Macropus eugenii.

作者信息

Wong R O, Wye-Dvorak J, Henry G H

出版信息

J Comp Neurol. 1986 Nov 1;253(1):1-12. doi: 10.1002/cne.902530102.

Abstract

The morphology of the ganglion cell layer of the adult tammar wallaby has been examined from Nissl-stained retinal flatmounts. From this material, neurons have been classed as ganglion cells or displaced amacrine cells according to the disposition of Nissl substance. A further subdivision of ganglion cells into a separate group of alphalike cells was assisted by determining the range of soma sizes in neurofibrillar-stained flatmounts, a method which, in the cat, has revealed the presence of alpha cells. Isodensity contour maps prepared from the Nissl-stained flatmounts show a well-developed visual streak and an area centralis in the total neuronal population. A similar pattern was also found in the ganglion cells, thus confirming Tancred's (J. Comp. Neurol. 196:585-603, '81) finding, and, as well, in the alphalike ganglion cells and the displaced amacrine cells. The relative proportions of ganglion cells to displaced amacrines (GC:DA) were evaluated from isodensity profiles drawn along and vertical to the visual streak for the two cell types and also from maps showing the variation in the GC:DA ratio throughout the retina. A comparison with results published for other species shows that the visual streak development in the tammar wallaby is consistent with the expectations of the "terrain" theory and that, in its relative proportion of displaced amacrines, the tammar closely resembles the rabbit but contrasts sharply with the cat, which has half as many ganglion cells and three times as many displaced amacrines as the other two species.

摘要

通过尼氏染色的视网膜平铺标本,对成年帚尾袋貂神经节细胞层的形态进行了研究。从这些材料中,根据尼氏物质的分布,神经元被分类为神经节细胞或移位无长突细胞。通过确定神经原纤维染色平铺标本中细胞体大小的范围,辅助将神经节细胞进一步细分为一组单独的α样细胞,这种方法在猫中已揭示了α细胞的存在。由尼氏染色平铺标本制备的等密度轮廓图显示,在整个神经元群体中存在发育良好的视条纹和中央凹。在神经节细胞中也发现了类似的模式,从而证实了坦克雷德(《比较神经学杂志》196:585 - 603,'81)的发现,并且在α样神经节细胞和移位无长突细胞中也是如此。从沿着视条纹并垂直于视条纹绘制的等密度剖面图以及显示整个视网膜中神经节细胞与移位无长突细胞比例(GC:DA)变化的图谱中,评估了神经节细胞与移位无长突细胞的相对比例。与其他物种发表的结果进行比较表明,帚尾袋貂的视条纹发育与“地形”理论的预期一致,并且在其移位无长突细胞的相对比例方面,帚尾袋貂与兔子非常相似,但与猫形成鲜明对比,猫的神经节细胞数量只有其他两个物种的一半,而移位无长突细胞数量是其他两个物种的三倍。

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