DocumentCode :
3685552
Title :
Localization of spatially distributed brain sources after a tensor-based preprocessing of interictal epileptic EEG data
Author :
L. Albera;H. Becker;A. Karfoul;R. Gribonval;A. Kachenoura;S. Bensaid;L. Senhadji;A. Hernandez;I. Merlet
Author_Institution :
INSERM U1099, Rennes F-35000, France
fYear :
2015
Firstpage :
6995
Lastpage :
6998
Abstract :
This paper addresses the localization of spatially distributed sources from interictal epileptic electroencephalographic data after a tensor-based preprocessing. Justifying the Canonical Polyadic (CP) model of the space-time-frequency and space-time-wave-vector tensors is not an easy task when two or more extended sources have to be localized. On the other hand, the occurrence of several amplitude modulated spikes originating from the same epileptic region can be used to build a space-time-spike tensor from the EEG data. While the CP model of this tensor appears more justified, the exact computation of its loading matrices can be limited by the presence of highly correlated sources or/and a strong background noise. An efficient extended source localization scheme after the tensor-based preprocessing has then to be set up. Different strategies are thus investigated and compared on realistic simulated data: the “disk algorithm” using a precomputed dictionary of circular patches, a standardized Tikhonov regularization and a fused LASSO scheme.
Keywords :
"Tensile stress","Electroencephalography","Brain modeling","Matrix decomposition","Scalp","Epilepsy","Context"
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2015 37th Annual International Conference of the IEEE
ISSN :
1094-687X
Electronic_ISBN :
1558-4615
Type :
conf
DOI :
10.1109/EMBC.2015.7320002
Filename :
7320002
Link To Document :
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