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同步脑电图/功能磁共振成像记录的伪迹减少:成像伪迹的自适应有限脉冲响应滤波器减少

Artifact reduction for simultaneous EEG/fMRI recording: adaptive FIR reduction of imaging artifacts.

作者信息

Wan Xiaohong, Iwata Kazuki, Riera Jorge, Kitamura Masaharu, Kawashima Ryuta

机构信息

Advanced Science and Technology of Materials, NICHe, Tohoku University, Aobaku, Sendai 980-8579, Japan.

出版信息

Clin Neurophysiol. 2006 Mar;117(3):681-92. doi: 10.1016/j.clinph.2005.07.025. Epub 2006 Feb 2.

Abstract

OBJECTIVE

We present a new method of effectively removing imaging artifacts of electroencephalography (EEG) and extensively conserving the time-frequency features of EEG signals during simultaneous functional magnetic resonance imaging (fMRI) scanning under conventional conditions.

METHODS

Under the conventional conditions of a 5000 Hz EEG sampling rate, but in the absence of the MRI slice-timing signals, the imaging artifact during each slice scanning is theoretically inferred to be a linear combination of the average artifact waveform and its derivatives, deduced by band-limited Taylor's expansion. Technically, the imaging artifact reduction algorithm is equivalent to an adaptive finite impulse response (FIR) filter.

RESULTS

The capability of this novel method removing the imaging artifacts of EEG recording during fMRI scanning has been demonstrated by a phantom experiment. Moreover, the effectiveness of this method in conserving the time-frequency features of EEG activity has been evaluated by both visually evoked experiments and alpha waves.

CONCLUSIONS

The adaptive FIR method is an effective method of removing the imaging artifacts under conventional conditions, and also conserving the time-frequency EEG signals.

SIGNIFICANCE

The proposed adaptive FIR method, removing the imaging artifacts, combined with the wavelet-based non-linear noise reduction (WNNR) method [Wan X, Iwata K, Riera J, Ozaki T, Kitamura M, Kawashima R. Artifact reduction for EEG/fMRI recording: Nonlinear reduction of ballistocardiogram artifacts. Clin Neurophysiol 2006;117:668-80], reducing the ballistocardiogram artifacts (BAs), makes it feasible to obtain accurate EEG signals from the simultaneous EEG recordings during fMRI scanning.

摘要

目的

我们提出一种新方法,可在传统条件下的同步功能磁共振成像(fMRI)扫描过程中有效去除脑电图(EEG)的成像伪影,并广泛保留EEG信号的时频特征。

方法

在5000 Hz EEG采样率的传统条件下,但在没有MRI切片定时信号的情况下,通过带限泰勒展开理论推断每个切片扫描期间的成像伪影是平均伪影波形及其导数的线性组合。从技术上讲,成像伪影减少算法等效于自适应有限脉冲响应(FIR)滤波器。

结果

通过模型实验证明了这种新方法去除fMRI扫描期间EEG记录成像伪影的能力。此外,通过视觉诱发实验和阿尔法波评估了该方法在保留EEG活动时频特征方面的有效性。

结论

自适应FIR方法是在传统条件下去除成像伪影并保留EEG时频信号的有效方法。

意义

所提出的去除成像伪影的自适应FIR方法与基于小波的非线性降噪(WNNR)方法[Wan X,Iwata K,Riera J,Ozaki T,Kitamura M,Kawashima R。EEG/fMRI记录的伪影减少:心冲击图伪影的非线性减少。临床神经生理学2006;117:668 - 80]相结合,减少心冲击图伪影(BAs),使得在fMRI扫描期间从同步EEG记录中获得准确的EEG信号成为可能。

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