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顶盖前区通路:猫的超微结构定量分析

Pretectotectal pathway: an ultrastructural quantitative analysis in cats.

作者信息

Baldauf Zsolt B, Wang Xiang-Ping, Wang Siting, Bickford Martha E

机构信息

Department of Anatomical Sciences and Neurobiology, University of Louisville, School of Medicine, Louisville, Kentucky 40292, USA.

出版信息

J Comp Neurol. 2003 Sep 15;464(2):141-58. doi: 10.1002/cne.10792.

Abstract

Both the pretectum (PT) and the superior colliculus (SC) play an important role in directing eye movements and in sensorimotor coupling. A reciprocal connection between the PT and the SC has been described, which suggests a strong interplay between these two structures. We injected the cat SC with retrograde tracers and examined the labeled pretectotectal (PTT) cells at the light and electron microscopic level. PTT cells were distributed mostly in the nucleus of the optic tract and 93.1% contained gamma amino butyric acid (GABA). We also observed that PTT cells are located outside of pretectal regions distinguished by dense retinal terminals and clusters of cells that contain calbindin. This suggests that the GABAergic PTT cells are distinct from the GABAergic pretectogeniculate cells that have been previously described as being distributed within these regions. Finally, to determine the synaptic targets of PTT terminals, we injected the PT with anterograde tracers and examined terminals labeled in the SC at the ultrastructural level. The labeled PTT terminals were beaded fibers that were distributed mainly within the stratum griseum superficiale (SGS) of the SC. Using postembedding immunocytochemistry, 94.5% were found to be GABAergic. The PTT terminals were mostly small in size and primarily contacted GABA-negative dendrites (88.1%) and in some cases somata (4.7%). The remainder terminated on GABAergic dendrites (7.2%). Our results suggest that the PTT cells constitute a separate population of GABAergic efferent cells in the PT, which may function to inhibit the activity of non-GABAergic SC efferent cells in the SGS.

摘要

顶盖前区(PT)和上丘(SC)在引导眼球运动和感觉运动耦合中均发挥着重要作用。已有研究描述了PT和SC之间的相互连接,这表明这两个结构之间存在强烈的相互作用。我们向猫的SC注射逆行示踪剂,并在光学和电子显微镜水平检查标记的顶盖前区-顶盖前区(PTT)细胞。PTT细胞主要分布在视束核中,93.1%含有γ-氨基丁酸(GABA)。我们还观察到,PTT细胞位于顶盖前区之外,这些区域以密集的视网膜终末和含有钙结合蛋白的细胞簇为特征。这表明GABA能PTT细胞与先前描述为分布在这些区域内的GABA能顶盖前区-外侧膝状体细胞不同。最后,为了确定PTT终末的突触靶点,我们向PT注射顺行示踪剂,并在超微结构水平检查SC中标记的终末。标记的PTT终末是串珠状纤维,主要分布在SC的浅灰色层(SGS)内。使用包埋后免疫细胞化学方法,发现94.5%是GABA能的。PTT终末大多尺寸较小,主要与GABA阴性树突(88.1%)接触,在某些情况下也与胞体(4.7%)接触。其余的终末终止于GABA能树突(7.2%)。我们的结果表明,PTT细胞在PT中构成了一个单独的GABA能传出细胞群体,其可能起到抑制SGS中非GABA能SC传出细胞活性的作用。

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