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两栖类动物顶盖退变与再生的超微结构研究

Ultrastructural study of degeneration and regeneration in the amphibian tectum.

作者信息

Ostberg A, Norden J

出版信息

Brain Res. 1979 Jun 8;168(3):441-55. doi: 10.1016/0006-8993(79)90301-9.

Abstract

The processes of degeneration and reinnervation in the optic tectum of Xenopus laevis have been detailed by quantitative ultrastructural analysis. The tecta were denervated either permanently, by removing the contralateral eye, or temporarily, by cutting the optic tract. After denervation the total number of synapses decreases rapidly within 4 days of a stable level of about 40% of the original number. Vacated postsynaptic sites are subsequently removed by phagocytosis. When regenerating axons arrive in the tectum they make synaptic contact by inducing new postsynaptic membrane specializations. The ultrastructural sequence of reinnervation by optic axons resembles initial synaptogenesis.

摘要

通过定量超微结构分析,对非洲爪蟾视顶盖中的退化和再支配过程进行了详细研究。视顶盖通过切除对侧眼而被永久去神经支配,或通过切断视束而被暂时去神经支配。去神经支配后,突触总数在4天内迅速减少至稳定水平,约为原始数量的40%。随后,空出的突触后位点通过吞噬作用被清除。当再生轴突到达视顶盖时,它们通过诱导新的突触后膜特化来建立突触联系。视轴突再支配的超微结构序列类似于初始突触形成。

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