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The Ipsilateral Vestibulothalamic Tract in the Human Brain

机译:人脑中的同侧脉络膜丘脑区

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摘要

Although there are a few studies of portions of the vestibular system such as the vestibulocerebellar tract and the neural connectivity of the vestibular nuclei (VN), no study of the ipsilateral vestibulothalamic tract (VTT) (originating from the VN and mainly connecting to the lateral thalami nuclei) has been reported. In the current study, using diffusion tensor tractography (DTT), we investigate the reconstruction method and characteristics of the ipsilateral VTT in normal subjects. Thirty-three subjects were recruited for this study. For the ipsilateral VTT, the seed region of interest (ROI) was placed on the VN, which was isolated on the FA map using adjacent structures as follows: the reticular formation (anterior boundary), posterior margin of medulla and pons (posterior boundary), medial lemniscus (medial boundary) and restiform body (lateral boundary). The target ROI was placed at the lateral thalamic nuclei using known anatomical locations. The DTT parameters of the ipsilateral VTT were measured. The ipsilateral VTTs that originated from the vestibular nuclei ascended postero-laterally to the upper pons and antero-medially to the upper midbrain via the medial longitudinal fasciculus, and terminated the lateral thalamic nuclei. No significant differences were observed in DTT parameters of the ipsilateral VTT between the right and left hemispheres (p > 0.05). Using DTT, we reconstructed the ipsilateral VTT and observed the anatomical characteristics of the ipsilateral VTT in normal subjects. We believe that the methodology and results in this study could be helpful to researchers and clinicians in this field.
机译:尽管对前庭系统的某些部分(如前庭小脑束和前庭核(VN)的神经连通性)进行了一些研究,但尚未研究同侧前庭小丘脑束(VTT)(起源于VN,主要连接至外侧丘脑核)的报道。在当前的研究中,我们使用弥散张量法(DTT)研究正常受试者同侧VTT的重建方法和特征。本研究招募了33名受试者。对于同侧VTT,将感兴趣的种子区域(ROI)放在VN上,并使用以下相邻结构在FA图上将其隔离:网状结构(前边界),延髓的后缘和脑桥(后边界) ,内侧lemniscus(内侧边界)和Restiform体(外侧边界)。使用已知的解剖位置将目标ROI放置在丘脑外侧核。测量同侧VTT的DTT参数。起源于前庭核的同侧VTTs通过内侧纵筋膜从后外侧上升至上桥,从前内侧上升至上中脑,并终止丘脑外侧核。左右半球在同侧VTT的DTT参数上没有观察到显着差异(p> 0.05)。使用DTT,我们重建了同侧VTT,并观察了正常受试者中同侧VTT的解剖特征。我们认为,这项研究的方法和结果可能对该领域的研究人员和临床医生有所帮助。

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