Termination of spiral waves with biphasic shocks: Role of virtual electrode polarization

被引:35
作者
Anderson, C
Trayanova, N [1 ]
Skouibine, K
机构
[1] Tulane Univ, Dept Biomed Engn, Lindy Boggs Ctr 500, New Orleans, LA 70118 USA
[2] Duke Univ, Dept Math, Durham, NC 27706 USA
关键词
biphasic shock; virtual electrode polarization; spiral wave; break excitation; simulation;
D O I
10.1046/j.1540-8167.2000.01386.x
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Introduction: This simulation study seeks to extend the virtual electrode polarization (VEP) theory for defibrillation to explain the success and failure of biphasic shocks. The goals of the study are to (1) provide insight into why optimal biphasic shocks have a lower voltage defibrillation threshold than monophasic shocks, (2) examine the mechanisms of biphasic shock failure and to determine whether they differ from those of monophasic shocks, and (3) study how the timing of biphasic shock delivery to a spiral wave affects voltage defibrillation threshold. Methods mid Results: A spiral wave is initiated in a bidomain representation of a 2-cm x 2-cm sheet of ventricular myocardium. The model incorporates nonuniform fiber curvature, membrane kinetics suitable for high-strength shocks, and electroporation, ii spatially uniform extracellular field is delivered by line electrodes. The shock establishes VEP that dictates the postshock activity in the tissue. Our results demonstrate that the second phase of biphasic shocks leaves the tissue with substantially smaller postshock excitable gap, thus eliminating the majority of the substrate for reinitiation of reentrant activity. Further, the occurrence of break excitations for weaker biphasic shocks indicates that the mechanisms for biphasic shock failure are more complex than for monophasic shocks. Biphasic voltage defibrillation thresholds range from 8 to 16 V/cm, depending on the position of the spiral o ave. An increase in the amount of preshock excitable gap lends to an increase in voltage defibrillation threshold. Conclusion: This study demonstrates the importance of VEP and its interaction with preshock activity in the success and failure of biphasic defibrillation shocks.
引用
收藏
页码:1386 / 1396
页数:11
相关论文
共 35 条
[1]   A PROSPECTIVE RANDOMIZED EVALUATION OF BIPHASIC VERSUS MONOPHASIC WAVEFORM PULSES ON DEFIBRILLATION EFFICACY IN HUMANS [J].
BARDY, GH ;
IVEY, TD ;
ALLEN, MD ;
JOHNSON, G ;
MEHRA, R ;
GREENE, HL .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 1989, 14 (03) :728-733
[2]   STRENGTH-DURATION CURVES OF FIXED PULSE WIDTH VARIABLE TILT TRUNCATED EXPONENTIAL WAVEFORMS FOR NONTHORACOMY INTERNAL DEFIBRILLATION IN DOGS [J].
CHAPMAN, PD ;
WETHERBEE, JN ;
VETTER, JW ;
TROUP, P ;
SOUZA, J .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 1988, 11 (07) :1045-1050
[3]   IMPROVED DEFIBRILLATION THRESHOLDS WITH LARGE CONTOURED EPICARDIAL ELECTRODES AND BIPHASIC WAVE-FORMS [J].
DIXON, EG ;
TANG, ASL ;
WOLF, PD ;
MEADOR, JT ;
FINE, MJ ;
CALFEE, RV ;
IDEKER, RE .
CIRCULATION, 1987, 76 (05) :1176-1184
[4]   A SIMULATION STUDY OF THE VENTRICULAR MYOCARDIAL ACTION-POTENTIAL [J].
DROUHARD, JP ;
ROBERGE, FA .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1982, 29 (07) :494-502
[5]   Transmembrane voltage changes produced by real and virtual electrodes during monophasic defibrillation shock delivered by an implantable electrode [J].
Efimov, IR ;
Cheng, YN ;
Biermann, M ;
VanWagoner, DR ;
Mazgalev, TN ;
Tchou, PJ .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 1997, 8 (09) :1031-1045
[6]  
Efimov IR, 1998, CIRC RES, V82, P918
[7]   STRENGTH DURATION AND PROBABILITY OF SUCCESS CURVES FOR DEFIBRILLATION WITH BIPHASIC WAVE-FORMS [J].
FEESER, SA ;
TANG, ASL ;
KAVANAGH, KM ;
ROLLINS, DL ;
SMITH, WM ;
WOLF, PD ;
IDEKER, RE .
CIRCULATION, 1990, 82 (06) :2128-2141
[8]   REFRACTORY PERIOD PROLONGATION BY BIPHASIC DEFIBRILLATOR WAVE-FORMS IS ASSOCIATED WITH ENHANCED SODIUM CURRENT IN A COMPUTER-MODEL OF THE VENTRICULAR ACTION-POTENTIAL [J].
JONES, JL ;
JONES, RE ;
MILNE, KB .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1994, 41 (01) :60-68
[9]   Threshold reduction with biphasic defibrillator waveforms - Role of charge balance [J].
Jones, JL ;
Tovar, OH .
JOURNAL OF ELECTROCARDIOLOGY, 1995, 28 :25-30
[10]   COMPARISON OF THE INTERNAL DEFIBRILLATION THRESHOLDS FOR MONOPHASIC AND DOUBLE AND SINGLE CAPACITOR BIPHASIC WAVEFORMS [J].
KAVANAGH, KM ;
TANG, ASL ;
ROLLINS, DL ;
SMITH, WM ;
IDEKER, RE .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 1989, 14 (05) :1343-1349