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单眼剥夺对猫背外侧膝状核中谷氨酸脱羧酶阳性神经元大小的影响。

The effects of monocular deprivation on the size of GAD+ neurons in the cat's dorsal lateral geniculate nucleus.

作者信息

Robson J A, Martin-Elkins C L

出版信息

J Comp Neurol. 1985 Sep 1;239(1):62-74. doi: 10.1002/cne.902390106.

Abstract

Previous studies have shown that suturing one eyelid closed in a newborn kitten results in profound changes in the development of the visual system. Among these is a retardation in the growth of neurons in the layers of the dorsal lateral geniculate nucleus receiving retinal input from the closed eye. Moreover, the greatest effect appears to be in the largest neurons. The present study examines the effects of monocular deprivation on the perikaryal size of a select group of small lateral geniculate neurons. GABAergic neurons, that may be interneurons. These cells were selectively labeled by an antiserum to glutamic acid decarboxylase (GAD) and immunocytochemical methods. The results demonstrate that GAD+ neurons are among the smallest in the lateral geniculate nucleus and that they are insensitive to the effects of monocular deprivation. That is, GAD+ neurons in deprived laminae A and A1 are similar in size to those in the corresponding, nondeprived laminae. These findings are consistent with the hypothesis that GAD+ neurons are interneurons and therefore not subject to binocular competition in the visual cortex. This interpretation, however, is complicated by additional studies of the postnatal development of GAD+ neurons which reveal that GAD+ neurons grow to their adult size relatively early, before the onset of the critical period. Thus the insensitivity of the perikarya of GAD+ neurons to monocular deprivation may be attributable to their precocious growth.

摘要

先前的研究表明,在新生小猫中缝合一只眼睑会导致视觉系统发育发生深刻变化。其中包括接受来自闭合眼视网膜输入的背外侧膝状核各层神经元生长迟缓。此外,最大的影响似乎出现在最大的神经元中。本研究考察了单眼剥夺对一组特定的外侧膝状小神经元胞体大小的影响。γ-氨基丁酸能神经元,可能是中间神经元。这些细胞通过抗谷氨酸脱羧酶(GAD)抗血清和免疫细胞化学方法进行选择性标记。结果表明,GAD+神经元是外侧膝状核中最小的神经元之一,并且它们对单眼剥夺的影响不敏感。也就是说,剥夺层A和A1中的GAD+神经元大小与相应的非剥夺层中的神经元相似。这些发现与GAD+神经元是中间神经元且因此在视觉皮层中不受双眼竞争影响的假设一致。然而,对GAD+神经元出生后发育的进一步研究使这种解释变得复杂,这些研究表明GAD+神经元在关键期开始之前相对较早地生长到其成年大小。因此,GAD+神经元胞体对单眼剥夺不敏感可能归因于它们过早的生长。

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