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人耳蜗核中神经元周围网的拓扑和细胞分布

Topographical and cellular distribution of perineuronal nets in the human cochlear nucleus.

作者信息

Wagoner Jessica L, Kulesza Randy J

机构信息

Auditory Research Center, Lake Erie College of Osteopathic Medicine, 1858 West Grandview Boulevard, Erie, PA 16509, USA.

出版信息

Hear Res. 2009 Aug;254(1-2):42-53. doi: 10.1016/j.heares.2009.04.008. Epub 2009 Apr 19.

Abstract

Specialized constructs of the extracellular matrix termed perineuronal nets surround the soma, primary dendrites and initial axon segment of some but not all neuronal populations in the central nervous system. In an effort to determine the cellular localization of perineuronal nets in the human cochlear nucleus (CN), we first performed a quantitative morphometric study of the human CN. We provide evidence for a laminar organization in the human dorsal cochlear nucleus (DCN; including molecular, granular and deep layers) as in other laboratory animals. Additionally, we find that the human ventral cochlear nucleus (VCN) contains distinct octopus, stellate, globular and spherical bushy cell populations, as described in other species. Using Wisteria floribunda histochemistry in five human brainstems, we identified perineuronal nets in the human cochlear nucleus. Perineuronal nets are associated with the vast majority of octopus and stellate cells in the caudal VCN. In the rostral VCN, dense perineuronal nets are associated with globular bushy cells and faint nets are associated with some spherical bushy cells and stellate cells. Few perineuronal nets are found in the DCN.

摘要

细胞外基质中被称为神经周网的特殊结构围绕着中枢神经系统中部分而非全部神经元群体的胞体、初级树突和轴突起始段。为了确定神经周网在人耳蜗核(CN)中的细胞定位,我们首先对人耳蜗核进行了定量形态学研究。我们提供了证据,证明人背侧耳蜗核(DCN;包括分子层、颗粒层和深层)与其他实验动物一样存在分层结构。此外,我们发现人腹侧耳蜗核(VCN)包含如其他物种中所描述的不同的章鱼状、星形、球状和球形浓密细胞群体。通过对五个人类脑干进行紫藤组织化学研究,我们在人耳蜗核中鉴定出了神经周网。神经周网与尾侧VCN中的绝大多数章鱼状和星形细胞相关。在头侧VCN中,密集的神经周网与球状浓密细胞相关,而微弱的神经周网与一些球形浓密细胞和星形细胞相关。在DCN中发现的神经周网很少。

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