Marco Fedele

Orcid: 0000-0001-5801-8260

According to our database1, Marco Fedele authored at least 14 papers between 2015 and 2023.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

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PhD thesis 
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Links

Online presence:

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Bibliography

2023
lifex-ep: a robust and efficient software for cardiac electrophysiology simulations.
BMC Bioinform., December, 2023

lifex-fiber: an open tool for myofibers generation in cardiac computational models.
BMC Bioinform., December, 2023

2022
A cardiac electromechanical model coupled with a lumped-parameter model for closed-loop blood circulation.
J. Comput. Phys., 2022

A comprehensive and biophysically detailed computational model of the whole human heart electromechanics.
CoRR, 2022

life<sup>x</sup> - heart module: a high-performance simulator for the cardiac function. Package 1: Fiber generation.
CoRR, 2022

2021
A computational model applied to myocardial perfusion in the human heart: From large coronaries to microvasculature.
J. Comput. Phys., 2021

A multiscale CFD model of blood flow in the human left heart coupled with a lumped-parameter model of the cardiovascular system.
CoRR, 2021

Modeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations.
CoRR, 2021

Electromechanical modeling of human ventricles with ischemic cardiomyopathy: numerical simulations in sinus rhythm and under arrhythmia.
Comput. Biol. Medicine, 2021

2020
A cardiac electromechanics model coupled with a lumped parameters model for closed-loop blood circulation. Part II: numerical approximation.
CoRR, 2020

A cardiac electromechanics model coupled with a lumped parameters model for closed-loop blood circulation. Part I: model derivation.
CoRR, 2020

An image-based computational hemodynamics study of the Systolic Anterior Motion of the mitral valve.
Comput. Biol. Medicine, 2020

2017
Benchmarking a Hemodynamics Application on Intel Based HPC Systems.
Proceedings of the Parallel Computing is Everywhere, 2017

2015
Semi-automatic three-dimensional vessel segmentation using a connected component localization of the Region-Scalable Fitting Energy.
Proceedings of the 9th International Symposium on Image and Signal Processing and Analysis, 2015


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