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视网膜拥挤会改变α神经节细胞的形态。

Retinal crowding alters the morphology of alpha ganglion cells.

作者信息

Kirby M A, Chalupa L M

出版信息

J Comp Neurol. 1986 Sep 22;251(4):532-41. doi: 10.1002/cne.902510408.

Abstract

It has been hypothesized that the dendritic field size of individual retinal ganglion cells is regulated early in development by interactions among neighboring cells (Wässle and Reiman, Proc. R. Soc. Lond. B. 200:441-461, 1978). An opportunity to test this hypothesis is provided by the consequences of prenatal enucleation that results in an increased density of ganglion cells in the remaining retina (Chalupa et al., Neuroscience 12:1139-1146, 1984). In the present study we compared dendritic field diameters of alpha ganglion cells in normal retinas to those of adult cats that were monocularly enucleated before birth (on embryonic days 42 and 51) and 6 days after birth. In each animal ganglion cells were labeled by central injections of horseradish peroxidase. The retinas were incubated according to a modified Hanker-Yates procedure and whole-mounted. All cells were sampled from the temporal retina along a corridor established by a line drawn through the optic disk and the area centralis. Alpha cells were differentiated into ON and OFF subtypes on the basis of their level of stratification in the inner plexiform layer (Peichl and Wässle, Proc. R. Soc. Lond. B. 212:139-156, 1981). Dendritic field and soma diameters were determined from complete cell drawings by calculating the mean of the two longest orthogonal diameters. Our main findings are: Early monocular enucleation does not disrupt the mosaics of ON and OFF alpha ganglion cells in the remaining retina of adult animals. Within the retinal corridor sampled, the density of alpha cells was substantially greater than normal in the remaining retina of the prenatal enucleates at all eccentricities except the far periphery. Except at the far periphery, the dendritic field diameters of the prenatally enucleated animals were significantly smaller than normal when compared at equivalent eccentricities. However, when compared at equivalent cell densities, dendritic field dimensions in the prenatally enucleated and normal animals were found to be similar. In the prenatal enucleates the somas of these neurons were also significantly smaller than normal. If the monocular enucleation was postnatal, however, the density and the dendritic field diameters of alpha cells did not differ appreciably from normal. These results indicate that the morphology of retinal ganglion cells can be influenced by increasing the density of developing ganglion cells.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

据推测,单个视网膜神经节细胞的树突野大小在发育早期是由相邻细胞之间的相互作用调节的(瓦塞尔和雷曼,《伦敦皇家学会学报B》200:441 - 461,1978年)。产前摘除眼球导致剩余视网膜中神经节细胞密度增加,这为检验该假说提供了一个机会(查卢帕等人,《神经科学》12:1139 - 1146,1984年)。在本研究中,我们比较了正常视网膜中α神经节细胞的树突野直径与成年猫的,这些成年猫在出生前(胚胎第42天和51天)以及出生后6天被单眼摘除眼球。在每只动物中,通过向中枢注射辣根过氧化物酶来标记神经节细胞。视网膜按照改良的汉克 - 耶茨程序进行孵育并进行整装处理。所有细胞均沿着由穿过视盘和中央凹的线所确定的通道从颞侧视网膜取样。根据α细胞在内网状层的分层水平将其分为ON和OFF亚型(佩希尔和瓦塞尔,《伦敦皇家学会学报B》212:139 - 156,1981年)。通过计算两个最长正交直径的平均值,从完整的细胞绘图中确定树突野和胞体直径。我们的主要发现是:早期单眼摘除眼球不会破坏成年动物剩余视网膜中ON和OFFα神经节细胞的镶嵌模式。在取样的视网膜通道内,除最外周外,产前摘除眼球的成年动物剩余视网膜中α细胞的密度在所有偏心度下都显著高于正常水平。除最外周外,在相同偏心度下比较时,产前摘除眼球动物的树突野直径明显小于正常水平。然而,如果在相同细胞密度下进行比较,产前摘除眼球动物和正常动物的树突野尺寸相似。在产前摘除眼球的动物中,这些神经元的胞体也明显小于正常水平。然而,如果单眼摘除眼球是在出生后进行的,α细胞的密度和树突野直径与正常情况没有明显差异。这些结果表明视网膜神经节细胞的形态可以受到发育中的神经节细胞密度增加的影响。(摘要截短至400字)

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