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在小鼠中通过单轴突重建揭示的异质性前庭小脑苔藓纤维投射。

Heterogeneous vestibulocerebellar mossy fiber projections revealed by single axon reconstruction in the mouse.

机构信息

Department of Systems Neurophysiology, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Tokyo, Japan.

Center for Brain Integration Research, Tokyo Medical and Dental University, Tokyo, Japan.

出版信息

J Comp Neurol. 2020 Jul;528(10):1775-1802. doi: 10.1002/cne.24853. Epub 2020 Jan 21.

Abstract

A significant population of neurons in the vestibular nuclei projects to the cerebellum as mossy fibers (MFs) which are involved in the control and adaptation of posture, eye-head movements, and autonomic function. However, little is known about their axonal projection patterns. We studied the morphology of single axons of medial vestibular nucleus (MVN) neurons as well as those originating from primary afferents, by labeling with biotinylated dextran amine (BDA). MVN axons (n = 35) were classified into three types based on their major predominant termination patterns. The Cbm-type terminated only in the cerebellum (15 axons), whereas others terminated in the cerebellum and contralateral vestibular nuclei (cVN/Cbm-type, 13 axons), or in the cerebellum and ipsilateral vestibular nuclei (iVN/Cbm-type, 7 axons). Cbm- and cVN/Cbm-types mostly projected to the nodulus and uvula without any clear relationship with longitudinal stripes in these lobules. They were often bilateral, and sometimes sent branches to the flocculus and to other vermal lobules. Also, the iVN/Cbm-type projected mainly to the ipsilateral nodulus. Neurons of these types of axons showed different distribution within the MVN. The number of MF terminals of some vestibulocerebellar axons, iVN/Cbm-type axons in particular, and primary afferent axons were much smaller than observed in previously studied MF axons originating from major precerebellar nuclei and the spinal cord. The results demonstrated that a heterogeneous population of MVN neurons provided divergent MF inputs to the cerebellum. The cVN/Cbm- and iVN/Cbm-types indicate that some excitatory neuronal circuits within the vestibular nuclei supply their collaterals to the vestibulocerebellum as MFs.

摘要

前庭核中有大量神经元作为苔藓纤维(MFs)投射到小脑,这些神经元参与姿势、眼头运动和自主功能的控制和适应。然而,它们的轴突投射模式知之甚少。我们通过用生物素化葡聚糖胺(BDA)标记来研究内侧前庭核(MVN)神经元以及源自初级传入的单个轴突的形态。根据其主要终止模式,MVN 轴突(n = 35)分为三种类型。Cbm 型仅终止于小脑(15 个轴突),而其他类型终止于小脑和对侧前庭核(cVN/Cbm 型,13 个轴突)或小脑和同侧前庭核(iVN/Cbm 型,7 个轴突)。Cbm 和 cVN/Cbm 型主要投射到小结和绒球,与这些小叶中的纵条纹没有明确关系。它们通常是双侧的,有时分支到绒球和其他蚓状叶。此外,iVN/Cbm 型主要投射到同侧小结。这些类型轴突的神经元在 MVN 内有不同的分布。一些前庭小脑纤维的 MF 末梢数量,特别是 iVN/Cbm 型轴突和初级传入轴突,比以前研究过的源自主要小脑前核和脊髓的 MF 轴突观察到的要小得多。结果表明,MVN 中的神经元群体提供了向小脑投射的不同 MF 输入。cVN/Cbm 和 iVN/Cbm 型表明前庭核内的一些兴奋性神经元回路作为 MF 将其侧支供应给前庭小脑。

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