DocumentCode
2492258
Title
Curdled uncoupling, disparate activation and fractionated electrograms in a computer model of anisotropic ventricular myocardium
Author
Lesh, M.D. ; Anacker, S. ; Goel, A.
Author_Institution
Dept. of Med., California Univ., San Francisco, CA, USA
fYear
1991
fDate
23-26 Sep 1991
Firstpage
645
Lastpage
648
Abstract
The implementation of a model of conduction in a heterogeneously uncoupled sheet of ventricular myocardium, with the pattern of uncoupling defined by a random, curdled fractal, is discussed. The authors tested the hypothesis that the greater the degree of cellular uncoupling, the greater the inhomogeneity of activation and the more abnormal the extracellular electrograms. They modeled propagation in a grid of resistively coupled cells. Resistors were assigned to produce a curdled pattern. A parameter relating the degree with which coupling resistance decorrelated with distance served to quantitate heterogeneous uncoupling. Heterogeneous activation and abnormal extracellular electrograms are directly related to the extent to which cell-to-cell electrical continuity is disrupted
Keywords
bioelectric phenomena; cardiology; cellular biophysics; digital simulation; muscle; physiological models; anisotropic ventricular myocardium; cell-to-cell electrical continuity; computer model; curdled uncoupling; disparate activation; fractionated electrograms; heterogeneously uncoupled sheet; random curdled fractal; resistively coupled cells grip; resistors; Anisotropic magnetoresistance; Biomembranes; Computer hacking; Conductivity; Extracellular; Fractals; Fractionation; Muscles; Myocardium; Resistors;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers in Cardiology 1991, Proceedings.
Conference_Location
Venice
Print_ISBN
0-8186-2485-X
Type
conf
DOI
10.1109/CIC.1991.168994
Filename
168994
Link To Document