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大鼠前庭代偿过程中的动态全脑代谢连接。

Dynamic whole-brain metabolic connectivity during vestibular compensation in the rat.

机构信息

German Center for Vertigo and Balance Disorders, University Hospital of Munich, LMU Munich, Munich, Germany.

German Center for Vertigo and Balance Disorders, University Hospital of Munich, LMU Munich, Munich, Germany; Department of Nuclear Medicine, University Hospital of Munich, LMU Munich, Munich, Germany.

出版信息

Neuroimage. 2021 Feb 1;226:117588. doi: 10.1016/j.neuroimage.2020.117588. Epub 2020 Nov 26.

Abstract

Unilateral damage to the inner ear results in an acute vestibular syndrome, which is compensated within days to weeks due to adaptive cerebral plasticity. This process, called central vestibular compensation (VC), involves a wide range of functional and structural mechanisms at the cellular and network level. The short-term dynamics of whole-brain functional network recruitment and recalibration during VC has not been depicted in vivo. The purpose of this study was to investigate the interplay of separate and distinct brain regions and in vivo networks in the course of VC by sequential [F]-FDG-PET-based statistical and graph theoretical analysis with the aim of revealing the metabolic connectome before and 1, 3, 7, and 15 days post unilateral labyrinthectomy (UL) in the rat. Temporal changes in metabolic brain connectivity were determined by Pearson's correlation (|r| > 0.5, p < 0.001) of regional cerebral glucose metabolism (rCGM) in 57 segmented brain regions. Metabolic connectivity analysis was compared to univariate voxel-wise statistical analysis of rCGM over time and to behavioral scores of static and dynamic sensorimotor recovery. Univariate statistical analysis revealed an ipsilesional relative rCGM decrease (compared to baseline) and a contralesional rCGM increase in vestibular and limbic networks and an increase in bilateral cerebellar and sensorimotor networks. Quantitative analysis of the metabolic connections showed a maximal increase from baseline to day 3 post UL (interhemispheric: 2-fold, ipsilesional: 3-fold, contralesional: 12-fold) and a gradual decline until day 15 post UL, which paralleled the dynamics of vestibular symptoms. In graph theoretical analysis, an increase in connectivity occurred especially within brain regions associated with brainstem-cerebellar and thalamocortical vestibular networks and cortical sensorimotor networks. At the symptom peak (day 3 post UL), brain networks were found to be organized in large ensembles of distinct and highly connected hubs of brain regions, which separated again with progressing VC. Thus, we found rapid changes in network organization at the subcortical and cortical level and in both hemispheres, which may indicate an initial functional substitution of vestibular loss and subsequent recalibration and reorganization of sensorimotor networks during VC.

摘要

单侧内耳损伤会导致急性前庭综合征,由于大脑适应性可塑性,这种综合征会在数天至数周内得到代偿。这个过程被称为中枢前庭代偿(VC),涉及到细胞和网络水平的广泛的功能和结构机制。VC 过程中全脑功能网络募集和重新校准的短期动力学尚未在体内描绘出来。本研究的目的是通过连续的基于[F]-FDG-PET 的统计和图论分析,研究 VC 过程中不同和独特的脑区和体内网络的相互作用,目的是在大鼠单侧迷路切除术后(UL)前和第 1、3、7 和 15 天揭示代谢连接组。通过对 57 个分割脑区的局部脑葡萄糖代谢(rCGM)进行 Pearson 相关(|r|>0.5,p<0.001)来确定代谢脑连接的时间变化。代谢连接分析与 rCGM 的时间上的单变量体素统计分析和静态和动态感觉运动恢复的行为评分进行了比较。单变量统计分析显示,与基线相比,前庭和边缘网络中出现同侧相对 rCGM 减少(与基线相比)和对侧 rCGM 增加,双侧小脑和感觉运动网络增加。代谢连接的定量分析显示,从 UL 后第 3 天到第 15 天,与基线相比,代谢连接的增加达到最大值(半球间:2 倍,同侧:3 倍,对侧:12 倍),并逐渐下降,直到 UL 后第 15 天,与前庭症状的动态相吻合。在图论分析中,连接性的增加主要发生在与脑干-小脑和丘脑皮质前庭网络以及皮质感觉运动网络相关的脑区。在症状高峰(UL 后第 3 天),发现脑网络由独特的和高度连接的脑区的大集合组成,随着 VC 的进行,这些网络再次分离。因此,我们发现亚皮质和皮质水平以及两个半球的网络组织发生了快速变化,这可能表明 VC 过程中前庭丧失的初始功能替代和随后的感觉运动网络重新校准和重组。

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