Citation: Xy. Min et R. Mehra, FINITE-ELEMENT ANALYSIS OF DEFIBRILLATION FIELDS IN A HUMAN TORSO MODEL FOR VENTRICULAR DEFIBRILLATION, Progress in Biophysics and Molecular Biology, 69(2-3), 1998, pp. 353-386
Citation: Wm. Sun et Xy. Min, AN INTEGRAL-EQUATION MODEL FOR INTRACARDIAC ELECTROGRAM SENSING, IEEE transactions on biomedical engineering, 44(12), 1997, pp. 1237-1242
Citation: Xy. Min et al., LOW-THRESHOLD NON-CS ELECTRODE SYSTEMS FOR ATRIAL DEFIBRILLATION AND COMPARED WITH CS-RA BY FINITE-ELEMENT HUMAN THORAX MODEL, Circulation, 96(8), 1997, pp. 2966-2966
Citation: Xy. Min et al., AN ELECTRODE SYSTEM CAN-RA WITH LOW ATRIAL DEFIBRILLATION THRESHOLD BY FINITE-ELEMENT HUMAN THORAX MODEL AND COMPARISONS WITH THE CLINICAL-DATA(CS), Circulation, 94(8), 1996, pp. 383-383
Authors:
MIN XY
MONGEON LR
WARMAN E
HILL MRS
BONNER M
MEHRA R
Citation: Xy. Min et al., A PROSPECTIVE CANINE STUDY OF HIGH-FREQUENCY PACING PULSES PRIOR TO DEFIBRILLATION SHOCKS FOR LOWERING DEFIBRILLATION THRESHOLDS, Circulation, 94(8), 1996, pp. 2563-2563
Citation: Xy. Min et al., FINITE-ELEMENT ANALYSIS OF CAN-RV AND CAN-RV ELECTRODE SYSTEMS FOR VENTRICULAR DEFIBRILLATION AND COMPARISONS WITH THE CLINICAL-DATA(SVC), Circulation, 94(8), 1996, pp. 2565-2565
Authors:
MIN XY
DEGROOT PJ
HILL MRS
WANG L
MEHRA R
Citation: Xy. Min et al., THE FINITE-ELEMENT ANALYSIS OF THE EFFECT OF ACTIVE CAN SIZE FOR CAN-RV VENTRICULAR DEFIBRILLATION, Circulation, 90(4), 1994, pp. 176-176
Authors:
MIN XY
DEGROOT PJ
HILL MRS
WANG L
MEHRA R
Citation: Xy. Min et al., THE FINITE-ELEMENT ANALYSIS OF THE EFFECT OF ACTIVE CAN SIZE FOR CAN-RV VENTRICULAR DEFIBRILLATION, Circulation, 90(4), 1994, pp. 176-176