DocumentCode :
1766539
Title :
A Constrained ICA Approach for Real-Time Cardiac Artifact Rejection in Magnetoencephalography
Author :
Breuer, Lukas ; Dammers, J. ; Roberts, Timothy P. L. ; Shah, N.J.
Author_Institution :
Inst. of Neurosci. & Med. (INM-4), Forschungszentrum Julich, Julich, Germany
Volume :
61
Issue :
2
fYear :
2014
fDate :
Feb. 2014
Firstpage :
405
Lastpage :
414
Abstract :
Recently, magnetoencephalography (MEG)-based real-time brain computing interfaces (BCI) have been developed to enable novel and promising methods of neuroscience research and therapy. Artifact rejection prior to source localization largely enhances the localization accuracy. However, many BCI approaches neglect real-time artifact removal due to its time consuming processing. With cardiac artifact rejection for real-time analysis (CARTA), we introduce a novel algorithm capable of real-time cardiac artifact (CA) rejection. The method is based on constrained independent component analysis (ICA), where a priori information of the underlying source signal is used to optimize and accelerate signal decomposition. In CARTA, this is performed by estimating the subject´s individual density distribution of the cardiac activity, which leads to a subject-specific signal decomposition algorithm. We show that the new method is capable of effectively reducing CAs within one iteration and a time delay of 1 ms. In contrast, Infomax and Extended Infomax ICA converged not until seven iterations, while FastICA needs at least ten iterations. CARTA was tested and applied to data from three different but most common MEG systems (4-D-Neuroimaging, VSM MedTech Inc., and Elekta Neuromag). Therefore, the new method contributes to reliable signal analysis utilizing BCI approaches.
Keywords :
brain-computer interfaces; cardiology; delays; independent component analysis; iterative methods; magnetoencephalography; medical signal processing; neurophysiology; real-time systems; signal denoising; source separation; 4D-Neuroimaging; BCI development; CARTA method; Elekta Neuromag; MEG-based real-time brain computing interfaces; VSM MedTech Inc; cardiac activity; cardiac artifact reduction; cardiac artifact rejection for real-time analysis method; constrained ICA approach; constrained independent component analysis; extended Infomax ICA; fastICA; individual density distribution estimation; iteration number; magnetoencephalography; neuroscience research; real-time artifact removal; real-time cardiac artifact rejection algorithm; signal analysis; signal decomposition acceleration; signal decomposition optimization; source localization; source signal a priori information; subject-specific signal decomposition algorithm; therapy; time 1 ms; time delay; Cleaning; Independent component analysis; Magnetic recording; Matrix decomposition; Neuroscience; Real-time systems; Signal resolution; Cardiac artifact rejection for real-time analysis (CARTA); constrained ICA (cICA); cross trial phase statistics (CTPS); independent component analysis (ICA); magnetoencephalography (MEG); real-time artifact reduction;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2013.2280143
Filename :
6587733
Link To Document :
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