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功能磁共振成像(fMRI)与同步脑电图(EEG)的整合:旨在全面了解目标检测中大脑活动的定位和时间进程。

Integration of fMRI and simultaneous EEG: towards a comprehensive understanding of localization and time-course of brain activity in target detection.

作者信息

Mulert Christoph, Jäger Lorenz, Schmitt Robert, Bussfeld Patrick, Pogarell Oliver, Möller Hans-Jürgen, Juckel Georg, Hegerl Ulrich

机构信息

Department of Psychiatry, LMU, Nussbaumstrasse 7, 80336 Munich, Germany.

出版信息

Neuroimage. 2004 May;22(1):83-94. doi: 10.1016/j.neuroimage.2003.10.051.

Abstract

fMRI and EEG are complimentary methods for the analysis of brain activity since each method has its strength where the other one has limits: The spatial resolution is thus in the range of millimeters with fMRI and the time resolution is in the range of milliseconds with EEG. For a comprehensive understanding of brain activity in target detection, nine healthy subjects (age 24.2 +/- 2.9) were investigated with simultaneous EEG (27 electrodes) and fMRI using an auditory oddball paradigm. As a first step, event-related potentials, measured inside the scanner, have been compared with the potentials recorded in a directly preceding session in front of the scanner. Attenuated amplitudes were found inside the scanner for the earlier N1/P2 component but not for the late P300 component. Second, an independent analysis of the localizations of the fMRI activations and the current source density as revealed by low resolution electromagnetic tomography (LORETA) has been done. Concordant activations were found in most regions, including the temporoparietal junction (TPJ), the supplementary motor area (SMA)/anterior cingulate cortex (ACC), the insula, and the middle frontal gyrus, with a mean Euclidean distance of 16.0 +/- 6.6 mm between the BOLD centers of gravity and the LORETA-maxima. Finally, a time-course analysis based on the current source density maxima was done. It revealed different time-course patterns in the left and right hemisphere with earlier activations in frontal and parietal regions in the right hemisphere. The results suggest that the combination of EEG and fMRI permits an improved understanding of the spatiotemporal dynamics of brain activity.

摘要

功能磁共振成像(fMRI)和脑电图(EEG)是分析大脑活动的互补方法,因为每种方法都有其优势,而另一种方法则存在局限性:fMRI的空间分辨率在毫米范围内,而EEG的时间分辨率在毫秒范围内。为了全面了解目标检测中的大脑活动,使用听觉oddball范式,对9名健康受试者(年龄24.2±2.9)同时进行了EEG(27个电极)和fMRI研究。第一步,将在扫描仪内测量的事件相关电位与在扫描仪前紧接的前一阶段记录的电位进行了比较。发现扫描仪内早期N1/P2成分的振幅衰减,但晚期P300成分未衰减。其次,对fMRI激活的定位和低分辨率电磁断层扫描(LORETA)揭示的电流源密度进行了独立分析。在大多数区域发现了一致的激活,包括颞顶叶交界处(TPJ)、辅助运动区(SMA)/前扣带回皮质(ACC)、岛叶和额中回,血氧水平依赖(BOLD)重心与LORETA最大值之间的平均欧几里得距离为16.0±6.6毫米。最后,基于电流源密度最大值进行了时间进程分析。结果显示,左右半球的时间进程模式不同,右半球额叶和顶叶区域的激活更早。结果表明,EEG和fMRI的结合有助于更好地理解大脑活动的时空动态。

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