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小鼠脑干中生物胞素标记的橄榄耳蜗神经元的纤维通路和分支模式。

Fiber pathways and branching patterns of biocytin-labeled olivocochlear neurons in the mouse brainstem.

作者信息

Brown M C

机构信息

Department of Cellular and Molecular Physiology, Harvard Medical School, Boston, Massachusetts.

出版信息

J Comp Neurol. 1993 Nov 22;337(4):600-13. doi: 10.1002/cne.903370406.

Abstract

Olivocochlear neurons have somata in the superior olivary complex in the brainstem and project fibers to the cochlea. The purpose of the present study was to demonstrate the fiber pathways and branching patterns of olivocochlear fibers within the brainstem. Olivocochlear fibers were labeled by extracellular injections of biocytin into the cochlea of mice. The injections labeled two populations of olivocochlear fibers. Thin olivocochlear fibers arose from small somata of the lateral olivocochlear group located ipsilaterally in the lateral superior olive. Thick olivocochlear fibers arose from larger somata of the medial olivocochlear group located bilaterally in the periolivary nuclei. The lateral olivocochlear and medial olivocochlear fibers had similar courses but differed in their branching patterns. Branches from lateral olivocochlear fibers terminated near their somata of origin in the lateral superior olive or in the lateral vestibular nucleus. Branches from medial olivocochlear fibers terminated in the inferior vestibular nucleus or in the cochlear nuclear complex. A few branches from medial olivocochlear fibers projected to the contralateral side. Although they project primarily to the cochlea, olivocochlear neurons also give off branches to a variety of nuclei in the brainstem, thus involving auditory and non-auditory nuclei in the olivocochlear reflex system.

摘要

橄榄耳蜗神经元的胞体位于脑干的上橄榄复合体中,并将纤维投射到耳蜗。本研究的目的是展示脑干内橄榄耳蜗纤维的纤维通路和分支模式。通过向小鼠耳蜗细胞外注射生物素标记橄榄耳蜗纤维。注射标记了两类橄榄耳蜗纤维。细的橄榄耳蜗纤维起源于同侧外侧上橄榄核中外侧橄榄耳蜗组的小胞体。粗的橄榄耳蜗纤维起源于双侧橄榄周核中内侧橄榄耳蜗组的较大胞体。外侧橄榄耳蜗纤维和内侧橄榄耳蜗纤维的走行相似,但分支模式不同。外侧橄榄耳蜗纤维的分支在其起源的外侧上橄榄核或外侧前庭核中的胞体附近终止。内侧橄榄耳蜗纤维的分支终止于下前庭核或耳蜗核复合体。内侧橄榄耳蜗纤维的一些分支投射到对侧。尽管橄榄耳蜗神经元主要投射到耳蜗,但它们也向脑干中的各种核发出分支,从而使听觉和非听觉核参与橄榄耳蜗反射系统。

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