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Matching pursuit and source deflation for sparse EEG/MEG dipole moment estimation
Journal article   Peer reviewed

Matching pursuit and source deflation for sparse EEG/MEG dipole moment estimation

Shun Chi Wu and A. Lee Swindlehurst
IEEE Transactions on Biomedical Engineering, Vol.60(8), pp.2280-2288
2013

Abstract

Alternating projection deflation dipole source localization electroencephalography (EEG) magnetoencephalography (MEG) matching pursuit (MP) sparse representations
In this paper, we propose novel matching pursuit (MP)-based algorithms for EEG/MEG dipole source localization and parameter estimation for multiple measurement vectors with constant sparsity. The algorithms combine the ideas of MP for sparse signal recovery and source deflation, as employed in estimation via alternating projections. The source-deflated matching pursuit (SDMP) approach mitigates the problem of residual interference inherent in sequential MP-based methods or recursively applied (RAP)-MUSIC. Furthermore, unlike prior methods based on alternating projection, SDMP allows one to efficiently estimate the dipole orientation in addition to its location. Simulations show that the proposed algorithms outperform existing techniques under various conditions, including those with highly correlated sources. Results using real EEG data from auditory experiments are also presented to illustrate the performance of these algorithms. © 1964-2012 IEEE.

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