首页> 美国卫生研究院文献>Frontiers in Neuroscience >Removing ballistocardiogram (BCG) artifact from full-scalp EEG acquired inside the MR scanner with Orthogonal Matching Pursuit (OMP)
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Removing ballistocardiogram (BCG) artifact from full-scalp EEG acquired inside the MR scanner with Orthogonal Matching Pursuit (OMP)

机译:使用正交匹配追踪(OMP)从MR扫描仪内部采集的全头皮EEG去除心电图(BCG)伪影

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摘要

Ballistocardiogram (BCG) artifact remains a major challenge that renders electroencephalographic (EEG) signals hard to interpret in simultaneous EEG and functional MRI (fMRI) data acquisition. Here, we propose an integrated learning and inference approach that takes advantage of a commercial high-density EEG cap, to estimate the BCG contribution in noisy EEG recordings from inside the MR scanner. To estimate reliably the full-scalp BCG artifacts, a near-optimal subset (20 out of 256) of channels first was identified using a modified recording setup. In subsequent recordings inside the MR scanner, BCG-only signal from this subset of channels was used to generate continuous estimates of the full-scalp BCG artifacts via inference, from which the intended EEG signal was recovered. The reconstruction of the EEG was performed with both a direct subtraction and an optimization scheme. We evaluated the performance on both synthetic and real contaminated recordings, and compared it to the benchmark Optimal Basis Set (OBS) method. In the challenging non-event-related-potential (non-ERP) EEG studies, our reconstruction can yield more than fourteen-fold improvement in reducing the normalized RMS error of EEG signals, compared to OBS.
机译:冲击心电图(BCG)伪影仍然是一个主要挑战,这使得脑电图(EEG)信号在同时进行的EEG和功能性MRI(fMRI)数据采集中难以解释。在这里,我们提出了一种集成的学习和推理方法,该方法利用了商业上的高密度脑电图上限,以估算MR扫描仪内部嘈杂的脑电图记录中的BCG贡献。为了可靠地估计全头皮BCG伪像,首先使用修改后的录制设置来识别通道的近最佳子集(256个中的20个)。在MR扫描器内部的后续记录中,来自该通道子集的仅BCG信号用于通过推断生成完整头皮BCG伪影的连续估计,从中恢复了预期的EEG信号。脑电图的重建是通过直接减法和优化方案来进行的。我们评估了合成污染记录和真实污染记录的性能,并将其与基准最佳基准集(OBS)方法进行了比较。在具有挑战性的非事件相关电位(non-ERP)脑电图研究中,与OBS相比,我们的重建方法在减少EEG信号的归一化RMS误差方面可产生超过14倍的改善。

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