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首页> 外文期刊>Frontiers in Neuroanatomy >The neural elements in the lining of the ventricular-subventricular zone: making an old story new by high-resolution scanning electron microscopy
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The neural elements in the lining of the ventricular-subventricular zone: making an old story new by high-resolution scanning electron microscopy

机译:心室-心室区衬里的神经元:通过高分辨率扫描电子显微镜使一个古老的故事崭新

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摘要

The classical description of the neural elements that compose the lining of brain ventricles introduces us to the single layer of ependymal cells. However, new findings, especially in the lateral ventricle (LV)—the major niche for the generation of new neurons in the adult brain—have provided information about additional cell elements that influence the organization of this part of the ventricular system and produce important contributions to neurogenesis. To complement the cell neurochemistry findings, we present a three-dimensional in situ description that demonstrates the anatomical details of the different types of ciliated cells and the innervation of these elements. After processing adult rat brains for ultrastructural analysis by high-resolution scanning electron microscopy (HRSEM) and transmission electron microscopy, we observed a heterogeneous pattern of cilia distribution at the different poles of the LV surface. Furthermore, we describe the particular three-dimensional aspects of the ciliated cells of the LV, in addition the fiber bundles and varicose axons surrounding these cells. Therefore, we provide a unique ultrastructural description of the three-dimensional in situ organization of the LV surface, highlighting its innervation, to corroborate the available neurochemical and functional findings regarding the factors that regulate this neurogenic niche.
机译:构成脑室衬里的神经元的经典描述将我们介绍给了单层的室管膜细胞。但是,新的发现,尤其是在侧脑室(LV)(成年大脑中新神经元的生成的主要利基)中,提供了有关影响该心室系统这一部分组织并产生重要贡献的其他细胞成分的信息。神经发生。为了补充细胞神经化学发现,我们提出了一个三维原位描述,该描述展示了不同类型的纤毛细胞的解剖细节以及这些元素的神经支配。在通过高分辨率扫描电子显微镜(HRSEM)和透射电子显微镜对成年大鼠大脑进行超微结构分析后,我们观察到了左室表面不同极处纤毛分布的异质模式。此外,我们描述了LV纤毛细胞的特定三维方面,以及围绕这些细胞的纤维束和静脉曲张轴突。因此,我们提供了LV表面的三维原位组织的独特超微结构描述,突出了其神经支配,从而证实了有关调节该神经源性利基的因素的可用神经化学和功能研究结果。

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