Key result
Patient-specific 3D electromechanical model successfully simulates ventricular activity to classify hemodynamically unstable VT in ICM.
Population
A patient-specific left ventricle with ischemic cardiomyopathy
Comparison
Electrophysiology model solutions vs electromechanics model solutions
Design
Computational modeling and numerical simulation study
Authors
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Supports in silico VT stability assessment in ischemic cardiomyopathy; hypothesis-generating and leaves open clinical translation.
A novel patient-specific computational model successfully simulates ventricular electromechanics in ischemic cardiomyopathy, demonstrating the utility of combined electrophysiological, mechanical, and hemodynamical modeling for assessing arrhythmia stability.
Salvador et al. (2021) studied Ischemic cardiomyopathy (n=1). Patient-specific computational electromechanical modeling was evaluated on Simulation of ventricular electromechanics in sinus rhythm and ventricular tachycardia. A novel patient-specific 3D electromechanical model successfully simulated ventricular activity in ischemic cardiomyopathy, classifying the induced ventricular tachycardia as hemodynamically unstable.
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