DocumentCode
934334
Title
Regularization Techniques in Realistic Laplacian Computation
Author
Bortel, Radoslav ; Sovka, Pavel
Author_Institution
Czech Tech. Univ., Prague
Volume
54
Issue
11
fYear
2007
Firstpage
1993
Lastpage
1999
Abstract
This paper explores regularization options for the ill-posed spline coefficient equations in the realistic Laplacian computation. We investigate the use of the Tikhonov regularization, truncated singular value decomposition, and the so-called lambda-correction with the regularization parameter chosen by the L-curve, generalized cross-validation, quasi-optimality, and the discrepancy principle criteria. The provided range of regularization techniques is much wider than in the previous works. The improvement of the realistic Laplacian is investigated by simulations on the three-shell spherical head model. The conclusion is that the best performance is provided by the combination of the Tikhonov regularization and the generalized cross-validation criterion-a combination that has never been suggested for this task before.
Keywords
bioelectric potentials; electroencephalography; splines (mathematics); Laplacian computation; Tikhonov regularization; generalized cross-validation criterion; ill-posed spline coefficient equations; truncated singular value decomposition; Biomedical measurements; Conductivity; Electroencephalography; Head; Laplace equations; Rough surfaces; Scalp; Singular value decomposition; Spline; Surface roughness; Regularization; surface Laplacian; Algorithms; Brain; Brain Mapping; Computer Simulation; Diagnosis, Computer-Assisted; Electroencephalography; Humans; Models, Neurological;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2007.893496
Filename
4352048
Link To Document