This work addresses major challenges of heart model personalization. Analysis techniques for clinical intracardiac electrograms determine wave direction and conduction velocity from single beats. Electrophysiological measurements are simulated to validate the models. Uncertainties in tissue conductivities impact on simulated ECGs. A minimal model of cardiac myocytes is adapted to the atria. This makes personalized cardiac models a promising technique to improve treatment of atrial arrhythmias
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
International audienceComputational modelling of cardiac arrhythmogenesis and arrhythmia maintenance...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
This work addresses major challenges of heart model personalization. Analysis techniques for clinica...
The objectives of this study were to evaluate the accuracy of personalized numerical simulations of ...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
For over 100 years cardiac electrophysiology has been measured in the clinic. The electrical signals...
In the last decade, electrophysiological models for in-silico simulations of cardiac electrophysiolo...
D6.3.2Within the euHeart project, WP6 aims at developing personalized biophysical models of the atri...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
To be filled INInternational audienceDespite recent efforts in cardiac electrophysiology modelling [...
Personalized cardiac electrophysiology simulations have demonstrated great potential to study cardia...
As cell-level differences from person to person are gaining more attention, the idea of having perso...
Patient-specific modelling aims to produce computational models of human physiology tailored to a sp...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
International audienceComputational modelling of cardiac arrhythmogenesis and arrhythmia maintenance...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
This work addresses major challenges of heart model personalization. Analysis techniques for clinica...
The objectives of this study were to evaluate the accuracy of personalized numerical simulations of ...
Comprehension of the beating of the human heart is important for cardiac research and will improve m...
For over 100 years cardiac electrophysiology has been measured in the clinic. The electrical signals...
In the last decade, electrophysiological models for in-silico simulations of cardiac electrophysiolo...
D6.3.2Within the euHeart project, WP6 aims at developing personalized biophysical models of the atri...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
To be filled INInternational audienceDespite recent efforts in cardiac electrophysiology modelling [...
Personalized cardiac electrophysiology simulations have demonstrated great potential to study cardia...
As cell-level differences from person to person are gaining more attention, the idea of having perso...
Patient-specific modelling aims to produce computational models of human physiology tailored to a sp...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...
International audienceComputational modelling of cardiac arrhythmogenesis and arrhythmia maintenance...
Computer models capable of representing the intrinsic personal electrophysiology (EP) of the heart i...