Myocardial Infarction, Border zone, computational modeling, Computational simulations, personalized medicine, Patient-specific Analysis
In-Silico, machine learning, Simulations, Proarrhythmic-risk, Torsade de Pointes, Cardiac safety
Heart failure, electro-mechanics, computational modeling, twitch force, early afterdepolarizations, SERCA
in-silico, proarrhythmic-risk, Torsade de Pointes, cardiac safety, population of models
heart Failure, electro-mechanics, computational modeling, twitch force, early afterdepolarizations, SERCA