Bonmassar Giorgio, Purdon Patrick L, Jääskeläinen Iiro P, Chiappa Keith, Solo Victor, Brown Emery N, Belliveau John W
NMR Center, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts 02129, USA.
Neuroimage. 2002 Aug;16(4):1127-41. doi: 10.1006/nimg.2002.1125.
Artifacts generated by motion (e.g., ballistocardiac) of the head inside a high magnetic field corrupt recordings of EEG and EPs. This paper introduces a method for motion artifact cancellation. This method is based on adaptive filtering and takes advantage of piezoelectric motion sensor information to estimate the motion artifact noise. This filter estimates the mapping between motion sensor and EEG space, subtracting the motion-related noise from the raw EEG signal. Due to possible subject motion and changes in electrode impedance, a time-varying mapping of the motion versus EEG is required. We show that this filter is capable of removing both ballistocardiogram and gross motion artifacts, restoring EEG alpha waves (8-13 Hz), and visual evoked potentials (VEPs). This adaptive filter outperforms the simple band-pass filter for alpha detection because it is also capable of reducing noise within the frequency band of interest. In addition, this filter also removes the transient responses normally visible in the EEG window after echo planar image acquisition, observed during interleaved EEG/fMRI recordings. Our adaptive filter approach can be implemented in real-time to allow for continuous monitoring of EEG and fMRI during clinical and cognitive studies.
在强磁场中,头部运动(如心冲击图)产生的伪影会破坏脑电图(EEG)和诱发电位(EPs)的记录。本文介绍了一种消除运动伪影的方法。该方法基于自适应滤波,并利用压电运动传感器信息来估计运动伪影噪声。此滤波器估计运动传感器与脑电图空间之间的映射关系,从原始脑电图信号中减去与运动相关的噪声。由于受试者可能的运动以及电极阻抗的变化,需要运动与脑电图的时变映射。我们表明,该滤波器能够去除心冲击图和总体运动伪影,恢复脑电图阿尔法波(8 - 13赫兹)以及视觉诱发电位(VEPs)。这种自适应滤波器在阿尔法检测方面优于简单的带通滤波器,因为它还能够降低感兴趣频段内的噪声。此外,该滤波器还能去除在回波平面图像采集后脑电图窗口中通常可见的瞬态响应,这在脑电图/功能磁共振成像(fMRI)交错记录过程中可以观察到。我们的自适应滤波方法可以实时实现,以便在临床和认知研究期间对脑电图和功能磁共振成像进行连续监测。