DocumentCode :
45218
Title :
Inter-Trial Analysis of Post-Movement Beta Activities in EEG Signals Using Multivariate Empirical Mode Decomposition
Author :
Hsiang-Chih Chang ; Po-Lei Lee ; Men-Tzung Lo ; Yu-Te Wu ; Kuo-Wei Wang ; Gong-Yau Lan
Author_Institution :
Center for Dynamical Biomarkers & Translational Med., Nat. Central Univ., Jhongli, Taiwan
Volume :
21
Issue :
4
fYear :
2013
fDate :
Jul-13
Firstpage :
607
Lastpage :
615
Abstract :
Event-related desynchronization/synchronization (ERD/ERS) is a technique to quantify subject´s nonphase-locked neural activities underlying specific frequency bands, reactive to external/internal stimulus. However, conventional ERD/ERS studies usually utilize fixed frequency band determined from one or few channels to filter whole-head EEG/MEG data, which may inevitably include task-unrelated signals and result in underestimation of reactive oscillatory activities in multichannel studies. In this study, we adopted multivariate empirical mode decomposition (MEMD) to extract beta-related oscillatory activities in performing self-paced right and left index-finger lifting tasks. The MEMD extracts common modes from all channels in same-index intrinsic mode functions (IMFs) which allows the temporal-frequency features among different channels can be compared in each subband. The beta-band oscillatory activities were further bandpass filtered within trial-specific beta bands determined from sensorimotor-related channels (C3 and C4), and then rectified using amplitude modulation method to detect trial-by-trial beta rebound (BR) values in ERS time courses. The validity of the MEMD approach in BR values extraction has been demonstrated in multichannel EEG study which showed larger BR values than conventional ERS technique. The MEMD-based method enables the trial-by-trial extraction of sensorimotor oscillatory activities which might allow the exploration of subtle brain dynamics in future studies.
Keywords :
band-pass filters; bioelectric potentials; electroencephalography; feature extraction; medical signal processing; neurophysiology; EEG signal; MEMD-based method; amplitude modulation method; bandpass filter; beta rebound value extraction; beta-related oscillatory activity; electroencephalography; event-related desynchronization technique; event-related synchronization technique; external stimulus; frequency band; index intrinsic mode function; internal stimulus; magnetoencephalography; multichannel EEG study; multivariate empirical mode decomposition; post-movement beta activity; reactive oscillatory activity; self-paced left index-finger lifting task; self-paced right index-finger lifting task; sensorimotor oscillatory activity extraction; sensorimotor-related channel; subject nonphase-locked neural activity; subtle brain dynamics; temporal-frequency feature; whole-head EEG data; whole-head MEG data; Electroencephalograph (EEG); event-related synchronization (ERS); multivariate empirical mode decomposition (MEMD); Adult; Algorithms; Beta Rhythm; Electroencephalography; Electroencephalography Phase Synchronization; Female; Fingers; Humans; Male; Models, Statistical; Movement; Multivariate Analysis; Reproducibility of Results; Young Adult;
fLanguage :
English
Journal_Title :
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
1534-4320
Type :
jour
DOI :
10.1109/TNSRE.2013.2258940
Filename :
6512548
Link To Document :
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