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Complete artifact removal for EEG recorded during continuous fMRI using independent component analysis

机译:使用独立的成分分析法在连续fMRI期间记录的脑电图完全去除

摘要

The simultaneous recording of EEG and fMRI is a promising method for combining the electrophysiological and hemodynamic information on cerebral dynamics. However, EEG recordings performed in the MRI scanner are contaminated by imaging, ballistocardiographic (BCG) and ocular artifacts. A number of processing techniques for the cancellation of fMRI environment disturbances exist: the most popular is averaged artifact subtraction (AAS), which performs well for the imaging artifact, but has some limitations in removing the BCG artifact, due to the variability in cardiac wave duration and shape; furthermore, no processing method to attenuate ocular artifact is currently used in EEG/fMRI, and contaminated epochs are simply rejected before signal analysis. In this work, we present a comprehensive method based on independent component analysis (ICA) for simultaneously removing BCG and ocular artifacts from the EEG recordings, as well as residual MRI contamination left by AAS. The ICA method has been tested on event-related potentials (ERPs) obtained from a visual oddball paradigm: it is very effective in attenuating artifacts in order to reconstruct clear brain signals from EEG acquired in the MRI scanner. It performs significantly better than the AAS method in removing the BCG artifact. Furthermore, since ocular artifacts can be completely suppressed, a larger number of trials is available for analysis. A comparison of ERPs inside the magnetic environment with those obtained out of the MRI scanner confirms that no systematic bias in the ERP waveform is produced by the ICA method.
机译:脑电图和功能磁共振成像的同时记录是一种将电生理和血液动力学信息结合在大脑动力学上的有前途的方法。但是,在MRI扫描仪中执行的EEG记录受到成像,心动描记法(BCG)和眼部伪影的污染。存在许多用于消除fMRI环境干扰的处理技术:最受欢迎的是平均伪影减影(AAS),它对成像伪影表现良好,但由于心电波的可变性,在去除BCG伪影方面有一些限制。持续时间和形状;此外,目前在EEG / fMRI中没有使用用于减轻眼部伪影的处理方法,并且在信号分析之前简单地拒绝了受污染的时期。在这项工作中,我们提出了一种基于独立成分分析(ICA)的综合方法,可同时从EEG记录中去除BCG和眼部伪影以及AAS留下的残留MRI污染。 ICA方法已经过从视觉奇异球范例获得的事件相关电位(ERP)的测试:在衰减伪影方面非常有效,以便从MRI扫描仪中获取的EEG重建清晰的大脑信号。在去除BCG伪像方面,它的性能明显优于AAS方法。此外,由于可以完全抑制眼部伪影,因此可以进行大量试验。将磁环境中的ERP与从MRI扫描仪中获得的ERP进行比较,确认ICA方法不会在ERP波形中产生系统偏差。

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