DocumentCode :
406759
Title :
An alternative subspace approach to EEG 3-D dipole source localization
Author :
Xu, Xiao-Liang ; Xiao-Liang Xu ; He, Bin
Author_Institution :
Illinois Math. & Sci. Acad., Aurora, IL, USA
Volume :
3
fYear :
2003
fDate :
17-21 Sept. 2003
Firstpage :
2132
Abstract :
In the present study, we investigate a new approach to EEG 3-D dipole source localization by adapting a non-recursive subspace algorithm called FINES. In estimating dipole locations, the present approach employs projections onto a particular vector set in the estimated noise-only subspace instead of the entire estimated noise-only subspace that MUSIC is based on. The subspace spanned by this vector set is, in the sense of principal angle, closest to the subspace spanned by the array manifold associated with a particular location region. By incorporating knowledge of the array manifold in identifying different vector sets in the estimated noise-only subspace for different location regions, this approach is able to enhance dipole source resolvability and reduce estimation errors. The present computer simulations show in EEG 3-D dipole source localization that FINES has 1) better resolvability of two closely-spaced sources, and 2) better estimation accuracy of source locations, compared to classic MUSIC.
Keywords :
electroencephalography; medical signal processing; signal classification; vectors; EEG 3-D dipole source localization; FINES; MUSIC; electroencephalography; first principal vectors; multiple signal classification; noise-only subspace; vector sets; Biomedical engineering; Brain modeling; Computer simulation; Electroencephalography; Estimation error; Gain measurement; Mathematics; Multiple signal classification; Noise reduction; Position measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE
ISSN :
1094-687X
Print_ISBN :
0-7803-7789-3
Type :
conf
DOI :
10.1109/IEMBS.2003.1280160
Filename :
1280160
Link To Document :
بازگشت