Siniatchkin Michael, Moeller Friederike, Jacobs Julia, Stephani Ulrich, Boor Rainer, Wolff Stephan, Jansen Olav, Siebner Hartwig, Scherg Michael
Christian-Albrechts-University, University Hospital of Pediatric Neurology, Schwanenweg 20, D-24105 Kiel, Germany.
Neuroimage. 2007 Sep 1;37(3):834-43. doi: 10.1016/j.neuroimage.2007.05.049. Epub 2007 Jun 7.
The ballistocardiogram (BCG) represents one of the most prominent sources of artifacts that contaminate the electroencephalogram (EEG) during functional MRI. The BCG artifacts may affect the detection of interictal epileptiform discharges (IED) in patients with epilepsy, reducing the sensitivity of the combined EEG-fMRI method. In this study we improved the BCG artifact correction using a multiple source correction (MSC) approach. On the one hand, a source analysis of the IEDs was applied to the EEG data obtained outside the MRI scanner to prevent the distortion of EEG signals of interest during the correction of BCG artifacts. On the other hand, the topographies of the BCG artifacts were defined based on the EEG recorded inside the scanner. The topographies of the BCG artifacts were then added to the surrogate model of IED sources and a combined source model was applied to the data obtained inside the scanner. The artifact signal was then subtracted without considerable distortion of the IED topography. The MSC approach was compared with the traditional averaged artifact subtraction (AAS) method. Both methods reduced the spectral power of BCG-related harmonics and enabled better detection of IEDs. Compared with the conventional AAS method, the MSC approach increased the sensitivity of IED detection because the IED signal was less attenuated when subtracting the BCG artifacts. The proposed MSC method is particularly useful in situations in which the BCG artifact is spatially correlated and time-locked with the EEG signal produced by the focal brain activity of interest.
心冲击图(BCG)是功能磁共振成像(fMRI)期间污染脑电图(EEG)的最主要伪影来源之一。BCG伪影可能会影响癫痫患者发作间期癫痫样放电(IED)的检测,降低脑电图-功能磁共振成像联合方法的敏感性。在本研究中,我们使用多源校正(MSC)方法改进了BCG伪影校正。一方面,将IED的源分析应用于在MRI扫描仪外获得的EEG数据,以防止在BCG伪影校正期间感兴趣的EEG信号失真。另一方面,基于在扫描仪内记录的EEG定义BCG伪影的地形图。然后将BCG伪影的地形图添加到IED源的替代模型中,并将组合源模型应用于在扫描仪内获得的数据。然后减去伪影信号,而不会使IED地形图产生明显失真。将MSC方法与传统的平均伪影减法(AAS)方法进行了比较。两种方法都降低了与BCG相关谐波的频谱功率,并能更好地检测IED。与传统的AAS方法相比,MSC方法提高了IED检测的敏感性,因为在减去BCG伪影时IED信号衰减较小。所提出的MSC方法在BCG伪影与感兴趣的局灶性脑活动产生的EEG信号在空间上相关且时间锁定的情况下特别有用。