DocumentCode
836480
Title
The combination method: a numerical technique for electrocardiographic calculations
Author
Stanley, Peggy C. ; Pilkington, Theo C.
Author_Institution
Siemens Gammasonics Inc., Des Plaines, IL, USA
Volume
36
Issue
4
fYear
1989
fDate
4/1/1989 12:00:00 AM
Firstpage
456
Lastpage
461
Abstract
A method for electrocardiographic and other bioelectric calculations combining the Green´s function boundary integral technique with the finite-element method is presented. Both the boundary and the finite-element method have been used extensively in electrocardiography for calculating epicardial and torso potentials. The boundary integral method is well suited for finding potentials in regions of isotropic conductivity and is computationally efficient, requiring unknown potentials to be calculated on the bounding surfaces only. It also compares favorably in accuracy with the finite-element method in those regions. The finite-element method is used in solving for potentials in regions of anisotropic conductivity since no simplifying assumptions or transformations of anisotropic regions into isotropic regions before solution are required. Combining the two methods, using the boundary integral method in isotropic regions and the finite-element method in anisotropic regions, allows the advantages of both methods to be exploited.<>
Keywords
Green´s function methods; electrocardiography; finite element analysis; Green´s function boundary integral technique; anisotropic conductivity; combination method; electrocardiographic calculations; epitaxial potentials; finite-element method; numerical technique; torso potentials; Anisotropic magnetoresistance; Bioelectric phenomena; Conductivity; Electric potential; Electrocardiography; Finite element methods; Generators; Heart; Integral equations; Torso; Electrocardiography; Mathematics; Models, Biological;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/10.18752
Filename
18752
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