猕猴的间脑三叉神经元树突结构。

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY
Niping Wang, Susan Warren, Paul J. May
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引用次数: 0

摘要

据推测,间脑三叉神经元不同寻常的中心位置是一种特化,使其能够接收突触输入。然而,通过电子显微镜在猕猴间脑三叉神经元的体节上观察到的突触终端相对较少。这使得树突突触终端的问题悬而未决。据报道,与三叉神经节中的假双极性神经元不同,一些间脑三叉神经元是多极细胞,在非灵长类动物中表现出许多树突过程。为了研究猕猴是否也存在这种形态特征,我们将生物素化葡聚糖胺逆行注入这些细胞,将其注入三叉神经入口区。部分间脑三叉神经元表现出短而分支少的树突过程。它们还表现出非常细小、短小的过程,据信这是体刺。因此,灵长类三叉神经间脑神经元似乎具有特化功能,旨在增加可用于突触输入的膜表面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mesencephalic trigeminal neuron dendritic structures in the macaque

It is presumed that the unusual central location of mesencephalic trigeminal neurons is a specialization that allows them to receive synaptic input. However, relatively few synaptic terminals were observed on the somata of mesencephalic trigeminal neurons in macaque monkeys via electron microscopy. This leaves the question of dendritic synaptic terminals open. Unlike the pseudounipolar neurons found in the trigeminal ganglion, some mesencephalic trigeminal neurons have been reported to be multipolar cells exhibiting a number of dendritic processes in non-primate species. To examine whether this morphological feature was also present in macaque monkeys, we retrogradely filled these cells with biotinylated dextran amine by injecting it into the trigeminal nerve entry zone. A portion of the mesencephalic trigeminal neurons exhibited short, poorly branched, dendritic processes. They also exhibited very fine, short processes believed to be somatic spines. Thus, primate trigeminal mesencephalic neurons appear to have specializations aimed at increasing the membrane surface area available for synaptic input.

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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
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