POTENTIAL DISTRIBUTION IN 3-DIMENSIONAL PERIODIC MYOCARDIUM .2. APPLICATION TO EXTRACELLULAR STIMULATION

被引:46
作者
KRASSOWSKA, W [1 ]
FRAZIER, DW [1 ]
PILKINGTON, TC [1 ]
IDEKER, RE [1 ]
机构
[1] DUKE UNIV,DEPT PATHOL,DURHAM,NC 27706
关键词
D O I
10.1109/10.52328
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Modeling potential distribution in the myocardium treated as a periodic structure implies that activation from high-current stimulation with extracellular electrodes is caused by the spatially oscillating components of the transmembrane potential. This hypothesis is tested by comparing the results of the model with experimental data. The conductivity, fiber orientation, the extent of the region, the location of the pacing site, and the stimulus strength determined from experiments are components of the model used to predict the distributions of potential, potential gradient, and the transmembrane potential throughout the region. Next, assuming that a specific value of the transmembrane potential is necessary and sufficient to activate fully repolarized myocardium, the model provides an analytical relation between large-scale field parameters, such as gradient and current density, and small-scale parameters, such as transmembrane potential. This relation is used to express the stimulation threshold in terms of gradient or current density components and to explain its dependence upon fiber orientation. The concept of stimulation threshold is generalized to three dimensions, and an excitability surface is constructed, which for cardiac muscle is approximately conical in shape. The numerical values of transmembrane potential and stimulation thresholds calculated using asymptotic analysis are in agreement with the results of animal experiments, confirming the validity of this approach to study the electrophysiology of periodic cardiac muscle. © 1990 IEEE
引用
收藏
页码:267 / 284
页数:18
相关论文
共 42 条
[1]  
BARDOU AL, 1988, 10TH P ANN C IEEE EN, P961
[2]  
BEELER GW, 1977, J PHYSL, V268, P117
[3]   DECREASED INTER-CELLULAR COUPLING AFTER PROLONGED RAPID STIMULATION IN RABBIT ATRIAL MUSCLE [J].
BREDIKIS, J ;
BUKAUSKAS, F ;
VETEIKIS, R .
CIRCULATION RESEARCH, 1981, 49 (03) :815-820
[4]  
CAUFIELD JB, 1985, ADV MYOCARDIOL, P257
[5]   DIRECTIONAL DIFFERENCES OF IMPULSE SPREAD IN TRABECULAR MUSCLE FROM MAMMALIAN HEART [J].
CLERC, L .
JOURNAL OF PHYSIOLOGY-LONDON, 1976, 255 (02) :335-346
[7]  
DEMELLO WC, 1982, MYOCARDIAL INJURY, P37
[8]   A SIMULATION STUDY OF THE VENTRICULAR MYOCARDIAL ACTION-POTENTIAL [J].
DROUHARD, JP ;
ROBERGE, FA .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1982, 29 (07) :494-502
[9]   FAST SODIUM CURRENT IN CARDIAC-MUSCLE - A QUANTITATIVE DESCRIPTION [J].
EBIHARA, L ;
JOHNSON, EA .
BIOPHYSICAL JOURNAL, 1980, 32 (02) :779-790
[10]  
FRAZIER DW, 1987, PACE, V10, P445