activity
20202022
most citedModeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations

128 citations · 156 across the 9 of their papers we have counts for

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8 papers · 1 filter

math.NA20222 cited

Fast and robust parameter estimation with uncertainty quantification for the cardiac function

Matteo Salvador, Francesco Regazzoni, Luca Dede' +1

Parameter estimation and uncertainty quantification are crucial in computational cardiology, as they enable the construction of digital twins that faithfully replicate the behavior…

math.NA2021

The role of mechano-electric feedbacks and hemodynamic coupling in scar-related ventricular tachycardia

Matteo Salvador, Francesco Regazzoni, Stefano Pagani +3

Mechano-electric feedbacks (MEFs), which model how mechanical stimuli are transduced into electrical signals, have received sparse investigation by considering electromechanical si…

math.NA2021

Electromechanical modeling of human ventricles with ischemic cardiomyopathy: numerical simulations in sinus rhythm and under arrhythmia

Matteo Salvador, Marco Fedele, Pasquale Claudio Africa +6

We developed a novel patient-specific computational model for the numerical simulation of ventricular electromechanics in patients with ischemic cardiomyopathy (ICM). This model re…

math.NA2021

Non intrusive reduced order modeling of parametrized PDEs by kernel POD and neural networks

Matteo Salvador, Luca Dede', Andrea Manzoni

We propose a nonlinear reduced basis method for the efficient approximation of parametrized partial differential equations (PDEs), exploiting kernel proper orthogonal decomposition…

math.NA2021128 cited

Modeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations

Roberto Piersanti, Pasquale C. Africa, Marco Fedele +4

Since myocardial fibers drive the electric signal propagation throughout the myocardium, accurately modeling their arrangement is essential for simulating heart electrophysiology (…

math.NA20209 cited

A cardiac electromechanics model coupled with a lumped parameters model for closed-loop blood circulation. Part II: numerical approximation

Francesco Regazzoni, Matteo Salvador, Pasquale Claudio Africa +3

In the framework of accurate and efficient segregated schemes for 3D cardiac electromechanics and 0D cardiovascular models, we propose here a novel numerical approach to address th…