DocumentCode :
1210375
Title :
The Simulation of Repolarization Events of the Cardiac Purkinje Fiber Action Potential
Author :
Drouhard, Jean-Pierre ; Roberge, Fernand A.
Author_Institution :
Institut de génie biomédical, Ecole Polytechnique et Universitéde Montréal
Issue :
7
fYear :
1982
fDate :
7/1/1982 12:00:00 AM
Firstpage :
481
Lastpage :
493
Abstract :
A mathematical model based on the formalism of the Hodgkin-Huxley equations was implemented on a microcomputer system and used to simulate the membrane action potential of cardiac Purkinje fibers. The complete model is a modification of the representation used by McAllister et al. [1], mainly with respect to the outward current components during the late plateau, the repolarization phase, and the slow repolarization phase of the action potential. A new formulation of the potassium conductance was used, involving two distinct types of ionic channels corresponding, respectively, to the experimentally observed inward-going and outward-going rectification properties of the Purkinje fiber membrane. A unified representation of the Purkinje fiber current components was thus obtained which provides a more satisfactory interpretation of experimental results than was possible with the original model of McAllister et al. [1]. The membrane channel for the potassium pacemaker current is characterized by a set of first-order activation¿inactivation variables and a constant fully activated conductance. The other channel carries the potassium current involved in the late plateau and repolarization phase of the action potential.
Keywords :
Biomembranes; Clamps; Differential equations; Discrete event simulation; Heart; Kinetic theory; Mathematical model; Microcomputers; Pacemakers; Voltage; Action Potentials; Heart Conduction System; Humans; Kinetics; Mathematics; Models, Cardiovascular; Potassium; Purkinje Fibers;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.1982.324920
Filename :
4121456
Link To Document :
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