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涉及猫单个视网膜神经节细胞轴突的突触回路。

Synaptic circuits involving an individual retinogeniculate axon in the cat.

作者信息

Hamos J E, Van Horn S C, Raczkowski D, Sherman S M

出版信息

J Comp Neurol. 1987 May 8;259(2):165-92. doi: 10.1002/cne.902590202.

Abstract

In order to describe the circuitry of a single retinal X-cell axon in the lateral geniculate nucleus, we physiologically characterized such an axon in the optic tract and injected it intra-axonally with horseradish peroxidase. Subsequently, we recovered the axon and employed electron microscopic techniques to examine the distribution of synapses from 18% of its labeled terminals by reconstructing the unlabeled postsynaptic neurons through a series of 1,200 consecutive thin sections. We found remarkable selectivity for the axon's output, since only four of the 43 available neurons in a limited portion of the terminal arbor receive synapses from labeled terminals. Moreover, the distribution of these synapses on the four neurons, which we term cells 1 through 4, varies with respect to synapses from other classes of terminals that contact the same cells, including synapses from unlabeled retinal terminals. For cells 1 and 3, the labeled terminals provide 49% and 33%, respectively, of their retinal synapses, and these are located on both dendritic shafts and appendages. Synapses from the injected axon to these cells are thus integrated with those from other retinal axons. For cell 2, the labeled terminals provide 100% of its retinal synapses, but these synapses converge on clusters of dendritic appendages where they are integrated with convergent inhibitory inputs. Finally, for cell 4, the labeled terminals provide less than 2% of its retinal inputs, and these are distally located; we suggest that these synapses are remnants of physiologically inappropriate miswiring that occurs during development. The findings from this study support a concept of selectivity in neuronal circuitry in the mammalian central nervous system and also reveal some of the diverse integrative properties of neurons in the lateral geniculate nucleus.

摘要

为了描述外侧膝状核中单个视网膜X细胞轴突的神经回路,我们对视神经束中的此类轴突进行了生理学特征分析,并向其轴突内注射了辣根过氧化物酶。随后,我们找回该轴突,并采用电子显微镜技术,通过对1200个连续的薄切片进行一系列重建,来检查其18%的标记终末的突触分布情况,从而重构未标记的突触后神经元。我们发现该轴突的输出具有显著的选择性,因为在终末分支的有限部分中的43个可用神经元中,只有4个接受来自标记终末的突触。此外,这4个神经元(我们将其称为细胞1至4)上这些突触的分布,与接触相同细胞的其他类型终末的突触分布有所不同,包括来自未标记视网膜终末的突触。对于细胞1和3,标记终末分别提供其视网膜突触的49%和33%,这些突触位于树突干和附属物上。因此,从注射轴突到这些细胞的突触与来自其他视网膜轴突的突触整合在一起。对于细胞2,标记终末提供其100%的视网膜突触,但这些突触汇聚在树突附属物簇上,在那里它们与汇聚的抑制性输入整合在一起。最后,对于细胞4,标记终末提供的视网膜输入不到2%,且这些突触位于远端;我们认为这些突触是发育过程中发生的生理上不适当的错误连接的残余物。这项研究的结果支持了哺乳动物中枢神经系统中神经元回路存在选择性的概念,同时也揭示了外侧膝状核中神经元的一些不同的整合特性。

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