DocumentCode
3445692
Title
3D parallel computer simulations of cardiac electrical propagation with sub-cellular resolution
Author
Pergola, Nicholas F. ; Buchanan, Jack W.
Author_Institution
School of Biomed. Eng., Tennessee Univ., Memphis, TN, USA
fYear
1997
fDate
4-6 Apr 1997
Firstpage
390
Lastpage
393
Abstract
Computer modeling provides a tool to assess the contribution of sub-cellular structure and physiology to normal and pathological cardiac conduction. Previous simulations have been too computationally demanding to model macroscopic tissue sections while retaining the sub-cellular resolution of interest. A new method for numerical simulations of cardiac electrical activity was developed which allows larger and more complex models to be examined. Sub-cellular resolution and physiology is incorporated into the cable model of cardiac tissue, which assumes a network of passive resistances linking ionic and capacitive membrane elements. This method adapts the model for three dimensional (3D) simulations in high performance parallel or vector computing environments. The authors´ data demonstrates the numerical convergence of the technique, and validation with experiment and previous computer models
Keywords
bioelectric phenomena; biology computing; cardiology; digital simulation; numerical analysis; parallel processing; physiological models; 3D parallel computer simulations; capacitive membrane elements; cardiac electrical activity; cardiac electrical propagation; cardiac tissue cable model; computer models; ionic membrane elements; macroscopic tissue sections; normal cardiac conduction; numerical convergence; passive resistances network; pathological cardiac conduction; subcellular resolution; Biomembranes; Cardiac tissue; Computational modeling; Computer simulation; Concurrent computing; High performance computing; Joining processes; Numerical simulation; Pathology; Physiology;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Engineering Conference, 1997., Proceedings of the 1997 Sixteenth Southern
Conference_Location
Biloxi, MS
ISSN
1086-4105
Print_ISBN
0-7803-3869-3
Type
conf
DOI
10.1109/SBEC.1997.583322
Filename
583322
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