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Optimized moving-average filtering for gradient artefact correction during simultaneous EEG-fMRI

机译:优化的移动平均滤波,可在同时进行EEG-fMRI时矫正梯度伪影

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The strong capability of the combined EEG-fMRI for investigating and revealing new insights on mapping of the brain activity as well as on several other neuroscientific studies has attracted the interest of researchers and clinicians over the past years. However, its consolidation as a powerful and independent technique still depends on enhancing the quality of the EEG signal, mainly due to the occurrence of artefacts. This paper presents a simple and effective approach for removal of the gradient artefact, which is induced in the EEG by the rapidly varying gradient magnetic fields of the fMRI scanner. According to our method, a moving-average filter is used to perform the removal of the gradient artefact. Nevertheless, rather than estimation of an artefact waveform template to be subtracted and achieve the EEG restoration, we have proposed to optimize the moving-average filtering process along the entire EEG excerpt. Thereby, the restored EEG can be estimated either from a sum of partial waveform components resulting from the recursive application of the optimized moving-average filter; or from an estimative of the artefact along the entire excerpt. Our methodology shows to achieve a quite satisfactory restoration of the EEG signal, even for low signal amplitudes. Moreover, in addition to predict the variability of the artefact waveform over the time, synchronization between EEG and fMRI clocks and extensive data segmentation are not required as well.
机译:过去的几年中,EEG-fMRI组合在研究和揭示关于脑活动图以及其他一些神经科学研究的新见解方面的强大能力吸引了研究人员和临床医生的兴趣。但是,将其合并为强大而独立的技术仍然取决于增强EEG信号的质量,这主要是由于出现了伪影。本文提出了一种简单有效的方法来消除梯度伪影,该伪影是由fMRI扫描仪的快速变化的梯度磁场在EEG中引起的。根据我们的方法,使用移动平均滤波器执行梯度伪像的去除。尽管如此,我们还是建议优化沿整个EEG摘录的移动平均滤波过程,而不是估计要减去的伪影波形模板并实现EEG恢复。从而,可以从由于优化的移动平均滤波器的递归应用而产生的部分波形分量的总和中估计恢复的EEG;或者,可以从部分波形分量的总和中估计出。或根据整个摘录中对人工制品的估计。我们的方法论表明,即使对于低信号幅度,也可以实现令人满意的EEG信号恢复。此外,除了预测伪像波形随时间的变化外,也不需要脑电图和功能磁共振成像时钟之间的同步以及广泛的数据分段。

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