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猫视觉皮层(18区)中γ-氨基丁酸能大篮状细胞网络:对侧向抑制的意义

Network of GABAergic large basket cells in cat visual cortex (area 18): implication for lateral disinhibition.

作者信息

Kisvárday Z F, Beaulieu C, Eysel U T

机构信息

Ruhr-Universität Bochum, Abteilung für Neurophysiologie, Germany.

出版信息

J Comp Neurol. 1993 Jan 15;327(3):398-415. doi: 10.1002/cne.903270307.

Abstract

Anatomical and immunohistochemical data indicate that, in addition to pyramidal neurons, nonpyramidal cells are exposed to perisomatic inhibition mediated by gamma-aminobutyric acid (GABA)-containing terminals. However, no direct information is available as yet for the origin of GABAergic inputs to morphologically identified GABAergic neurons. In the present paper, we studied the topographical and synaptic relationship between identified GABAergic large basket cells and their immunohistochemically characterized target neurons revealed by parvalbumin-(PV) and GABA immunostaining in the same material. Extracellularly applied biocytin labelled a total of 36 and 9 large basket cells in layers III and V, respectively. Of these, the axonal arborizations of two basket cells, BC1 and BC2, were reconstructed. The axon of BC1 occupied an area of about 2.3 x 2.2 mm2 in layer III, providing a total of 2,755 terminals. The axon of BC2 showed an overall extent of 3.8 x 1.7 mm2 in layer V elongated in the anteroposterior direction, and gave off 1,599 terminals. Immunostaining for PV was carried out to reveal putative nonpyramidal targets for BC1 and BC2. It was found that in addition to immunonegative cells, they established an average of 4-6 perisomatic contacts onto each of 58 (BC1) and 33 (BC2) PV-immunopositive neurons. For electron microscopic verification, 23 terminals apposing the somata of 12 PV-immunopositive neurons were selected. Each terminal was found to establish symmetrical (type II) contacts with its targeted cell. Furthermore, the distribution of soma area of the targeted PV-immunopositive cells and of identified large basket cells showed remarkable similarity, implying that the two populations were actually the same. In addition, the average horizontal distance between neighbouring PV-immunopositive target cells was found to be about 100 microns both in layers III and V. The results suggest that in area 18 the same large basket cell provides direct inhibition to certain pyramidal cells and facilitation to other pyramidal neurons, by inhibiting their presynaptic large basket cells at regular intervals.

摘要

解剖学和免疫组织化学数据表明,除锥体细胞外,非锥体细胞也受到由含γ-氨基丁酸(GABA)的终末介导的胞体周围抑制。然而,关于形态学上已鉴定的GABA能神经元的GABA能输入的起源,目前尚无直接信息。在本文中,我们研究了在同一材料中通过小白蛋白(PV)和GABA免疫染色所揭示的已鉴定的GABA能大篮状细胞与其免疫组织化学特征性靶神经元之间的拓扑和突触关系。细胞外施加生物素分别标记了Ⅲ层和Ⅴ层中的总共36个和9个大篮状细胞。其中,重建了两个篮状细胞BC1和BC2的轴突分支。BC1的轴突在Ⅲ层占据了约2.3×2.2平方毫米的区域,提供了总共2755个终末。BC2的轴突在Ⅴ层的前后方向上延伸,总面积为3.8×1.7平方毫米,并发出1599个终末。进行PV免疫染色以揭示BC1和BC2的假定非锥体靶标。发现除了免疫阴性细胞外,它们在58个(BC1)和33个(BC2)PV免疫阳性神经元中的每一个上平均建立了4 - 6个胞体周围接触。为了进行电子显微镜验证,选择了与12个PV免疫阳性神经元的胞体相邻的23个终末。发现每个终末与其靶细胞建立了对称(Ⅱ型)接触。此外,靶PV免疫阳性细胞和已鉴定的大篮状细胞的胞体面积分布显示出显著的相似性,这意味着这两个群体实际上是相同的。此外,发现在Ⅲ层和Ⅴ层中,相邻的PV免疫阳性靶细胞之间的平均水平距离约为100微米。结果表明,在18区,同一个大篮状细胞通过定期抑制其突触前大篮状细胞,对某些锥体细胞提供直接抑制,并对其他锥体神经元提供促进作用。

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