A theoretical analysis of acute ischemia and infarction using ECG reconstruction on a 2-D model of myocardium

被引:23
作者
Cimponeriu, A
Starmer, CF
Bezerianos, A [1 ]
机构
[1] Univ Patras, Sch Med, Dept Phys Med, Rion Patras 26500, Greece
[2] Med Univ S Carolina, Dept Biometry Epidemiol, Charleston, SC 29401 USA
[3] Med Univ S Carolina, Dept Med Cardiol, Charleston, SC 29401 USA
关键词
enlarged Q; infarction; ischemia; pointed T; polymorphic EGG; QRS amplitude; ST deflection; theoretical EGG;
D O I
10.1109/10.900247
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
We developed a two-dimensional ventricular tissue model in order to probe the determinants of electrocardiographic (ECG) morphology during acute and chronic ischemia, Hyperkalemia was simulated by step changes in [K+](out), while acidosis was induced by reducing Na+ and Ca2+ conductances. Hypoxia was introduced by its effect on potassium activity. During the initial moments of ischemia, ECG changes were characterized by increases in QRS amplitude and ST segment shortening, followed in the advanced phase by ST baseline elevation, T conformation changes, widening of the QRS and significant decreases in QRS amplitude in spite of an enlarged Q, During each phase, potential proarrhythmic mechanisms were investigated. The presence of unexcitable regions of simulated myocardial infarction led to polymorphic EGG. We also observed a nonuniform deflection of the ST segment from beat to beat, We used similar protocols to explore the responses of infarcted myocardium after impairment resolving. We found that despite irreversible uncoupling of the necrotic region, the restored normal ionic concentrations produced an isopotential ST segment and monomorphic ECG complexes, while an enlarged Q wave was still visible. In summary, these numerical experiments indicate the possibility to track in the ECG pathologic changes following the altered electrophysiology of the ischemic heart.
引用
收藏
页码:41 / 54
页数:14
相关论文
共 31 条
[1]  
Alberts B., 1994, MOL BIOL CELL
[2]  
Berne R. M., 1988, PHYSIOLOGY
[3]   Action potential propagation in ischemic cardiac tissue: A theoretical computer modeling [J].
Cimponeriu, A ;
Starmer, CF ;
Bezerianos, A .
COMPUTERS IN CARDIOLOGY 1998, VOL 25, 1998, 25 :317-320
[4]   CELLULAR BASIS FOR T WAVE OF ELECTROCARDIOGRAM [J].
COHEN, I ;
GILES, W ;
NOBLE, D .
NATURE, 1976, 262 (5570) :657-661
[5]  
Despopoulos A, 1991, COLOR ATLAS PHYSL, V4th
[6]   Cellular and pathophysiological mechanisms of ventricular arrhythmias in acute ischemia and infarction [J].
Ehlert, FA ;
Goldberger, JJ .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 1997, 20 (04) :966-975
[7]  
FERRARI R, 1998, AM J CARDIOL, V82
[8]   The forward and inverse problems of electrocardiography [J].
Gulrajani, RM .
IEEE ENGINEERING IN MEDICINE AND BIOLOGY MAGAZINE, 1998, 17 (05) :84-+
[9]   A QUANTITATIVE DESCRIPTION OF MEMBRANE CURRENT AND ITS APPLICATION TO CONDUCTION AND EXCITATION IN NERVE [J].
HODGKIN, AL ;
HUXLEY, AF .
JOURNAL OF PHYSIOLOGY-LONDON, 1952, 117 (04) :500-544