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猫外侧膝状核局部回路神经元的突触连接

Synaptic connectivity of a local circuit neurone in lateral geniculate nucleus of the cat.

作者信息

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

出版信息

Nature. 1985;317(6038):618-21. doi: 10.1038/317618a0.

Abstract

Although receptive fields of relay cells in the lateral geniculate nucleus of the cat nearly match those of their retinal afferents, only 10-20% of the synapses on these cells derive from the retina and are excitatory. Many more (30-40%) are inhibitory and largely control the gating of retinogeniculate transmission. These inhibitory synapses derive chiefly from two cell types: intrinsic local circuit neurones and cells in the adjacent perigeniculate nucleus. It has been difficult to study the functional organization of these inhibitory pathways; most efforts have relied on indirect approaches. Here we describe the use of direct techniques to study a local circuit neurone by iontophoresing horseradish peroxidase (HRP) into it, which completely labels the soma and processes of cells for subsequent light- and electron microscopic analysis. Although the response properties of the labelled cell are virtually indistinguishable from those of many relay cells, its morphology is typical of 'class 3' neurones (see Fig. 1 legend), which are widely believed to be interneurones (but see ref. 12). Here, we refer to the cell as a 'local circuit neurone', which allows for the possibility of a projection axon, rather than as an 'interneurone', a term that commonly excludes a projection axon. We find that the labelled cell has a myelinated axon, but that the axon loses its myelin within 50 microns of the soma and has not yet been traced further. The dendrites of the labelled cell possess presynaptic terminals that act as intrinsic sources of inhibition on geniculate relay cells. We also characterize other morphological aspects of this inhibitory circuitry.

摘要

尽管猫外侧膝状核中继细胞的感受野与其视网膜传入神经的感受野几乎匹配,但这些细胞上只有10%-20%的突触来自视网膜且具有兴奋性。更多(30%-40%)的突触是抑制性的,并且在很大程度上控制视网膜膝状体传递的门控。这些抑制性突触主要来自两种细胞类型:内在的局部回路神经元和相邻的膝状体旁核中的细胞。研究这些抑制性通路的功能组织一直很困难;大多数研究都依赖于间接方法。在这里,我们描述了使用直接技术,通过将辣根过氧化物酶(HRP)离子电渗到局部回路神经元中来对其进行研究,这可以完全标记细胞的胞体和突起,以便随后进行光学显微镜和电子显微镜分析。尽管标记细胞的反应特性与许多中继细胞的反应特性几乎无法区分,但其形态是典型的“3类”神经元(见图1图例),人们普遍认为它们是中间神经元(但见参考文献12)。在这里,我们将该细胞称为“局部回路神经元”,这考虑到了其可能有投射轴突,而不是称为“中间神经元”,后者通常不包括投射轴突。我们发现标记细胞有一条有髓轴突,但该轴突在距胞体50微米内失去髓鞘,且尚未追踪到更远的地方。标记细胞的树突拥有突触前终末,这些终末对膝状体中继细胞起到内在抑制源的作用。我们还描述了这种抑制性回路的其他形态学特征。

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