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猫初级听觉皮层(AI)的皮质-皮质连接:投射至AII区的颗粒上层神经元的分层组织与鉴定

Corticocortical connections of cat primary auditory cortex (AI): laminar organization and identification of supragranular neurons projecting to area AII.

作者信息

Winguth S D, Winer J A

出版信息

J Comp Neurol. 1986 Jun 1;248(1):36-56. doi: 10.1002/cne.902480104.

Abstract

The laminar distribution and structure of the supragranular cells projecting from primary auditory cortex (AI) to the second auditory cortex (AII) in the cat were studied with horseradish peroxidase. Injections in AII retrogradely labeled somata in ipsilateral cortical layers I-VI of AI. A bimodal laminar disposition was found, with approximately 40% of the labeled cells in layer III, 25% in layer V, and 10-15% each in layers II, IV, and VI; only a few cells were found in layer I. The labeled cells were scattered in small aggregates between which unlabeled neurons were interspersed. There was some, though not a strict, topographical distribution of the labeled cells according to the locus of the injection in AII. Injections in the caudal part of AII labeled cells in more rostral AI, while rostral AII injections labeled cells in more caudal AI. Ventral AII injections labeled more ventrally located AI cells, while more dorsal AII injections labeled more dorsally situated AI cells. AII injections also labeled cells in other auditory cortex subdivisions, including the posterior ectosylvian, ventroposterior, temporal, and dorsal auditory zone/suprasylvian fringe cortical areas, and in some non-auditory cortical areas. In layers II and III, both pyramidal and non-pyramidal cells were labeled. More pyramidal cells were labeled in layer III than layer II (80% vs. 62%), and the proportion of non-pyramidal cells in layer II was more than twice that in layer IV (27% vs. 12%). The types of labeled cells were distinguished from one another on the basis of size, somatic and dendritic shape, and laminar distribution. The profiles of labeled cells in these experiments were compared to, and correlated with, those in Golgi-impregnated material. In layer II, the classes of corticocortical projecting cells consisted of small and medium-sized pyramidal, bipolar, and multipolar cells. Those in layer III included small, medium-sized, and large pyramidal neurons, and bipolar and multipolar cells. The average somatic area of the labeled cells did not differ significantly from that of the unlabeled cells, and both were about equal in somatic size to neurons accumulating tritiated gamma-aminobutyric acid in layers II and III. These findings suggest that there is convergent, ipsilateral input onto AII from every layer in AI, and from other cortical auditory and non-auditory areas. A morphologically heterogeneous population of cells in AI contributes to these projections. Diversity in the cytological origins of corticocortical projections implies functional differences between layers II and III since the latter also projects commissural, while layer II in the cat, does not.

摘要

用辣根过氧化物酶研究了猫从初级听皮层(AI)投射到第二听皮层(AII)的颗粒上层细胞的分层分布和结构。向AII注射后,逆行标记了AI同侧皮层I-VI层中的胞体。发现了一种双峰分层分布,约40%的标记细胞在III层,25%在V层,II、IV和VI层各有10-15%;I层中仅发现少数细胞。标记细胞分散成小的细胞团,其间散布着未标记的神经元。根据在AII中的注射部位,标记细胞存在一定程度(虽不严格)的拓扑分布。向AII尾部注射标记了AI中更靠前部的细胞,而向AII前部注射则标记了AI中更靠后部的细胞。向AII腹侧注射标记了AI中位置更靠腹侧的细胞,而向AII背侧更多的注射则标记了AI中位置更靠背侧的细胞。向AII注射还标记了其他听皮层亚区的细胞,包括后外侧沟、腹后、颞叶和背侧听区/外侧沟上缘皮质区,以及一些非听皮层区。在II层和III层,锥体细胞和非锥体细胞均被标记。III层中被标记的锥体细胞比II层更多(80%对62%),II层中非锥体细胞的比例是IV层的两倍多(27%对12%)。根据大小、胞体和树突形状以及分层分布区分标记细胞的类型。将这些实验中标记细胞的形态与高尔基染色材料中的形态进行比较并建立相关性。在II层,皮质-皮质投射细胞类别包括中小型锥体细胞、双极细胞和多极细胞。III层中的细胞包括小、中、大型锥体细胞,以及双极细胞和多极细胞。标记细胞的平均胞体面积与未标记细胞的平均胞体面积无显著差异,二者在胞体大小上均与II层和III层中积累氚化γ-氨基丁酸的神经元大致相等。这些发现表明,AI的每一层以及其他皮质听区和非听区都有同侧汇聚输入到AII。AI中形态学上异质性的细胞群体参与了这些投射。皮质-皮质投射细胞在细胞学起源上的多样性意味着II层和III层之间存在功能差异,因为III层还投射到连合部,而猫的II层则不投射。

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