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[基于静息态功能磁共振成像的脑网络功能连接分析]

[Functional connectivity analysis of the brain network using resting-state FMRI].

作者信息

Hayashi Toshihiro

机构信息

Department of Molecular Neuroscience on Neurodegeneration, The University of Tokyo Graduate School of Medicine, Tokyo, Japan.

出版信息

Brain Nerve. 2011 Dec;63(12):1307-18.

Abstract

Spatial patterns of spontaneous fluctuations in blood oxygenation level-dependent (BOLD) signals reflect the underlying neural architecture. The study of the brain network based on these self-organized patterns is termed resting-state functional MRI (fMRI). This review article aims at briefly reviewing a basic concept of this technology and discussing its implications for neuropsychological studies. First, the technical aspects of resting-state fMRI, including signal sources, physiological artifacts, image acquisition, and analytical methods such as seed-based correlation analysis and independent component analysis, are explained, followed by a discussion on the major resting-state networks, including the default mode network. In addition, the structure-function correlation studied using diffuse tensor imaging and resting-state fMRI is briefly discussed. Second, I have discussed the reservations and potential pitfalls of 2 major imaging methods: voxel-based lesion-symptom mapping and task fMRI. Problems encountered with voxel-based lesion-symptom mapping can be overcome by using resting-state fMRI and evaluating undamaged brain networks in patients. Regarding task fMRI in patients, I have also emphasized the importance of evaluating the baseline brain activity because the amplitude of activation in BOLD fMRI is hard to interpret as the same baseline cannot be assumed for both patient and normal groups.

摘要

血氧水平依赖(BOLD)信号的自发波动空间模式反映了潜在的神经结构。基于这些自组织模式对脑网络进行的研究被称为静息态功能磁共振成像(fMRI)。这篇综述文章旨在简要回顾该技术的基本概念,并讨论其对神经心理学研究的意义。首先,解释了静息态fMRI的技术方面,包括信号源、生理伪影、图像采集以及诸如基于种子点的相关分析和独立成分分析等分析方法,随后讨论了主要的静息态网络,包括默认模式网络。此外,还简要讨论了使用弥散张量成像和静息态fMRI研究的结构-功能相关性。其次,讨论了两种主要成像方法的局限性和潜在陷阱:基于体素的病变-症状映射和任务fMRI。基于体素的病变-症状映射所遇到的问题可以通过使用静息态fMRI并评估患者未受损的脑网络来克服。关于患者的任务fMRI,还强调了评估基线脑活动的重要性,因为由于无法假设患者组和正常组具有相同的基线,所以BOLD fMRI中的激活幅度难以解释。

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