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健康人脑前庭小脑束的解剖位置:一项扩散张量成像研究

Anatomical Location of the Vestibulocerebellar Tract in the Healthy Human Brain: A Diffusion Tensor Imaging Study.

作者信息

Park Seo Yoon, Yeo Sang Seok, Jang Sung Ho, Cho In Hee

机构信息

Department of Health, Graduate School, Dankook University, Cheonan-si 31116, Korea.

Department of Physical Therapy, College of Health Sciences, Dankook University, Cheonan-si 31116, Korea.

出版信息

Brain Sci. 2021 Feb 5;11(2):199. doi: 10.3390/brainsci11020199.

Abstract

The vestibulocerebellar tract (VCT) is regarded as an important pathway of the central vestibular system. We identified the anatomical characteristics of the primary and secondary VCTs in a normal human brain using diffusion tensor imaging (DTI) tractography. Thirty-one healthy adults were recruited. A 1.5 T scanner was used for DTI tractography. A seed region of interest (ROI) was placed on the superior and medial vestibular nuclei at the pons level and a target ROI was placed on the uvula-nodulus of the cerebellum for reconstructing the primary VCT. In the secondary VCTs, the seed ROI was placed on the inferior and medial vestibular nuclei at the medulla oblongata level, and target ROIs were placed on the bilateral uvula-nodulus of the cerebellum. The primary VCT originated from the superior and medial vestibular nuclei at the pons level and terminated at the ipsilateral uvula-nodulus of the cerebellum. The component of the secondary VCTs originated from the inferior and medial vestibular nuclei at the level of the medulla oblongata and terminated at the bilateral uvula-nodulus of the cerebellum. Among them, 70.97% in the contralateral secondary VCT crossed at the vermis of the cerebellum. In addition, the fractional anisotropies (FAs) and mean diffusivity (MD) values of the primary VCT were significantly higher and lower, respectively, compared to those of the secondary VCTs ( < 0.05). The contralateral secondary VCT was significantly higher and lower in the MD and tract volume, respectively ( < 0.05), compared to the ipsilateral VCT. Therefore, we believe that the results will be useful for future studies of the vestibular projection pathway in the human brain injury aspect of central vestibular syndrome.

摘要

前庭小脑束(VCT)被认为是中枢前庭系统的一条重要通路。我们使用扩散张量成像(DTI)纤维束成像技术,在正常人类大脑中确定了初级和次级VCT的解剖学特征。招募了31名健康成年人。使用1.5T扫描仪进行DTI纤维束成像。在脑桥水平的上内侧前庭核放置感兴趣种子区域(ROI),并在小脑蚓垂-小结放置目标ROI,以重建初级VCT。在次级VCT中,种子ROI放置在延髓水平的下内侧前庭核,目标ROI放置在小脑的双侧蚓垂-小结。初级VCT起源于脑桥水平的上内侧前庭核,终止于同侧小脑蚓垂-小结。次级VCT的组成部分起源于延髓水平的下内侧前庭核,终止于小脑的双侧蚓垂-小结。其中,对侧次级VCT中有70.97%在小脑蚓部交叉。此外,与次级VCT相比,初级VCT的分数各向异性(FA)值显著更高,平均扩散率(MD)值显著更低(<0.05)。与同侧VCT相比,对侧次级VCT的MD和纤维束体积分别显著更高和更低(<0.05)。因此,我们认为这些结果将有助于未来在中枢前庭综合征人脑损伤方面的前庭投射通路研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a045/7914725/3dc907073ab0/brainsci-11-00199-g001.jpg

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