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通过空间滤波在同步功能磁共振成像(fMRI)期间进行脑电图(EEG)源定位与伪迹去除

Simultaneous EEG source localisation and artifact rejection during concurrent fMRI by means of spatial filtering.

作者信息

Brookes Matthew J, Mullinger Karen J, Stevenson Claire M, Morris Peter G, Bowtell Richard

机构信息

Sir Peter Mansfield Magnetic Resonance Centre, School of Physics and Astronomy, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Neuroimage. 2008 Apr 15;40(3):1090-104. doi: 10.1016/j.neuroimage.2007.12.030. Epub 2007 Dec 27.

Abstract

The simultaneous application of functional MRI and EEG represents an attractive, non-invasive technique for the combined measurement of electrical and haemodynamic activity in the human brain. Simultaneous EEG/fMRI provides a brain imaging modality with millimeter spatial accuracy, and millisecond temporal resolution. However, simultaneously acquired measurements are difficult due to the artifacts that are induced in the EEG by both the temporally varying field gradients used in MRI, and also blood flow effects. In this paper we apply an EEG beamformer spatial filter to EEG data recorded simultaneously with fMRI. We show, using this technique, that it is possible to localise accurately electrical effects in the brain, and that the localisation of driven oscillatory responses in the human visual cortex are spatially co-incident with the fMRI BOLD response. We also show how the beamformer can be used to extract timecourses of electrical activity from areas of interest in the brain. Such timecourses have millisecond time resolution. Finally, we show that in addition to source localisation, the beamformer spatial filter acts to reject interference in EEG signals, thus increasing the effective signal to noise ratio of electrical measurements. We show that the EEG-beamformer can eliminate effectively the ballistocardiogram artifact as well as residual gradient artifacts that remain in EEG data following correction using averaged artifact subtraction techniques.

摘要

同时应用功能磁共振成像(fMRI)和脑电图(EEG)是一种很有吸引力的非侵入性技术,可用于联合测量人脑的电活动和血流动力学活动。同步脑电图/功能磁共振成像提供了一种具有毫米级空间精度和毫秒级时间分辨率的脑成像方式。然而,由于磁共振成像中使用的随时间变化的场梯度以及血流效应在脑电图中诱发的伪影,同时获取测量数据很困难。在本文中,我们将脑电图波束形成器空间滤波器应用于与功能磁共振成像同时记录的脑电图数据。我们表明,使用这种技术可以准确地定位大脑中的电效应,并且人类视觉皮层中驱动振荡反应的定位在空间上与功能磁共振成像的血氧水平依赖(BOLD)反应一致。我们还展示了如何使用波束形成器从大脑感兴趣区域提取电活动的时间进程。这样的时间进程具有毫秒级的时间分辨率。最后,我们表明,除了源定位之外,波束形成器空间滤波器还可以抑制脑电图信号中的干扰,从而提高电测量的有效信噪比。我们表明,脑电图波束形成器可以有效地消除心冲击图伪影以及使用平均伪影减法技术校正后仍残留在脑电图数据中的残余梯度伪影。

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