FRACTIONATED ELECTROGRAMS FROM A COMPUTER-MODEL OF HETEROGENEOUSLY UNCOUPLED ANISOTROPIC VENTRICULAR MYOCARDIUM

被引:26
作者
ELLIS, WS
AUSLANDER, DM
LESH, MD
机构
[1] UNIV CALIF BERKELEY,BIOENGN GRAD GRP,BERKELEY,CA 94720
[2] UNIV CALIF SAN FRANCISCO,SAN FRANCISCO,CA 94143
[3] UNIV CALIF BERKELEY,DEPT MECH ENGN,BERKELEY,CA 94720
[4] UNIV CALIF SAN FRANCISCO,INST CARDIOVASC RES,SAN FRANCISCO,CA 94143
关键词
ELECTROPHYSIOLOGY; MYOCARDIUM; POTENTIALS;
D O I
10.1161/01.CIR.92.6.1619
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background The relation between heterogeneously coupled myocardium and fractionated electrograms is incompletely understood. The purpose of this study was to use a detailed computer model of nonuniformly anisotropic myocardium to test the hypothesis that spatial variation of morphology of electrograms recorded simultaneously from multiple sites increases with increasing heterogeneity of intercellular coupling. Methods and Results A sheet of elements with Beeler-Reuter ionic kinetics was coupled with cytoplasmic resistivity to model cells. Gap junctional resistance values were assigned by recursive randomization to produce a fractal pattern of heterogeneous coupling, simulating damage resulting from infarction. The correlation dimension of the pattern, D, measured heterogeneity of intercellular coupling. The peak-to-peak amplitude, duration, minimum derivative (steepest downslope), number of inflections, frequency of peak power, and bandwidth of unfiltered unipolar electrograms were calculated. Linear regressions indicate (P<.001) that the coefficient of variation of five electrogram metrics increases with increasing substrate heterogeneity and that the distance over which electrogram morphology decorrelates decreases with increasing heterogeneity of intercellular coupling. Conclusions These findings confirm our hypothesis that the spatial variation of morphology of electrograms recorded simultaneously from multiple sites increases with increasing heterogeneity of intercellular coupling.
引用
收藏
页码:1619 / 1626
页数:8
相关论文
共 34 条
[1]  
ANTEZELEVITCH C, 1991, CIRC RES, V69, P1427
[2]  
BASSINGTHWAIGHT.JB, 1988, ADV EXP MED BIOL, V222, P15
[3]   RECONSTRUCTION OF ACTION POTENTIAL OF VENTRICULAR MYOCARDIAL FIBERS [J].
BEELER, GW ;
REUTER, H .
JOURNAL OF PHYSIOLOGY-LONDON, 1977, 268 (01) :177-210
[4]   INTERPOLATING UNIPOLAR EPICARDIAL POTENTIALS FROM ELECTRODES SEPARATED BY INCREASING DISTANCES [J].
BLANCHARD, SM ;
DAMIANO, RJ ;
SMITH, WM ;
IDEKER, RE ;
LOWE, JE .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 1989, 12 (12) :1938-1955
[5]   SUCCESSFUL RADIOFREQUENCY CURRENT CATHETER ABLATION OF SUSTAINED VENTRICULAR-TACHYCARDIA [J].
CHINUSHI, M ;
AIZAWA, Y ;
KUWANO, H ;
HOSONO, H ;
KITAZAWA, H ;
KUSANO, Y ;
NAITHO, N ;
TAMURA, M ;
SHIBATA, A .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 1992, 15 (10) :1460-1466
[6]   CLASSIFICATION OF HEART-TISSUE FROM BIPOLAR AND UNIPOLAR INTRAMURAL POTENTIALS [J].
CLAYDON, FJ ;
PILKINGTON, TC ;
IDEKER, RE .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1985, 32 (07) :513-520
[7]   CARDIAC-MUSCLE - EXCITABILITY AND PASSIVE ELECTRICAL-PROPERTIES [J].
FOZZARD, HA .
PROGRESS IN CARDIOVASCULAR DISEASES, 1977, 19 (05) :343-359
[8]   ELECTROPHYSIOLOGIC AND ANATOMIC BASIS FOR FRACTIONATED ELECTROGRAMS RECORDED FROM HEALED MYOCARDIAL INFARCTS [J].
GARDNER, PI ;
URSELL, PC ;
FENOGLIO, JJ ;
WIT, AL .
CIRCULATION, 1985, 72 (03) :596-611
[9]   THE IMPACT OF ADJACENT ISOTROPIC FLUIDS ON ELECTROGRAMS FROM ANISOTROPIC CARDIAC-MUSCLE - A MODELING STUDY [J].
GESELOWITZ, DB ;
BARR, RC ;
SPACH, MS ;
MILLER, WT .
CIRCULATION RESEARCH, 1982, 51 (05) :602-613
[10]  
GOLDBERGER AL, 1987, YALE J BIOL MED, V60, P421