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使用盲源分离技术自动去除脑电图(EEG)数据中的眼动和眨眼伪迹。

Automatic removal of eye movement and blink artifacts from EEG data using blind component separation.

作者信息

Joyce Carrie A, Gorodnitsky Irina F, Kutas Marta

机构信息

Department of Computer Science, University of California-San Diego, La Jolla, California 92093-0114, USA.

出版信息

Psychophysiology. 2004 Mar;41(2):313-25. doi: 10.1111/j.1469-8986.2003.00141.x.

Abstract

Signals from eye movements and blinks can be orders of magnitude larger than brain-generated electrical potentials and are one of the main sources of artifacts in electroencephalographic (EEG) data. Rejecting contaminated trials causes substantial data loss, and restricting eye movements/blinks limits the experimental designs possible and may impact the cognitive processes under investigation. This article presents a method based on blind source separation (BSS) for automatic removal of electroocular artifacts from EEG data. BBS is a signal-processing methodology that includes independent component analysis (ICA). In contrast to previously explored ICA-based methods for artifact removal, this method is automated. Moreover, the BSS algorithm described herein can isolate correlated electroocular components with a high degree of accuracy. Although the focus is on eliminating ocular artifacts in EEG data, the approach can be extended to other sources of EEG contamination such as cardiac signals, environmental noise, and electrode drift, and adapted for use with magnetoencephalographic (MEG) data, a magnetic correlate of EEG.

摘要

眼球运动和眨眼产生的信号可能比大脑产生的电势大几个数量级,并且是脑电图(EEG)数据中伪迹的主要来源之一。剔除受污染的试验会导致大量数据丢失,而限制眼球运动/眨眼会限制可能的实验设计,并可能影响正在研究的认知过程。本文提出了一种基于盲源分离(BSS)的方法,用于自动从EEG数据中去除眼电伪迹。BBS是一种信号处理方法,包括独立成分分析(ICA)。与先前探索的基于ICA的伪迹去除方法相比,该方法是自动化的。此外,本文描述的BSS算法能够高度准确地分离相关的眼电成分。尽管重点是消除EEG数据中的眼部伪迹,但该方法可以扩展到EEG污染的其他来源,如心脏信号、环境噪声和电极漂移,并适用于脑磁图(MEG)数据,即EEG的磁相关数据。

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