The ventricular pressure profile is characteristic of the cardiac contraction progress and is useful to evaluate the cardiac performance. In this contribution, a tissue-level electromechanical model of the left ventricle is proposed, to assist the interpretation of left ventricular pressure waveforms. The left ventricle has been modeled as an ellipsoid composed of twelve mechano-hydraulic sub-systems. The asynchronous contraction of these twelve myocardial segments has been represented in order to reproduce a realistic pressure profiles. To take into account the different energy domains involved, the tissue-level scale and to facilitate the building of a modular model, multiple formalisms have been used: Bond Graph formalism for the mechano...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
We developed a novel patient-specific computational model for the numerical simulation of ventricula...
The ventricular pressure profile is characteristic of the cardiac contraction progress and is useful...
International audienceThe ventricular pressure profile is characteristic of the cardiac contraction ...
International audienceThis work contributes to the systemic interpretation of clinical data for the ...
International audienceThis paper presents a model-based method for the analysis of regional myocardi...
A model for the contraction of the left ventricle (LV) is developed for a spheroidal geometry. The c...
International audienceObjectives: The objective of the current study is to assess the feasibility of...
Modeling of cardiac electro-mechanics can enhance the understanding of the physiology and pathophysi...
Computational modeling of ventricular electromechanics is considered to be among the most promising ...
AIM: The aim of this study is to develop a coupled three-dimensional computational model of cardiac ...
Verification of electro-mechanic models of the heart require a good amount of reliable, high resolut...
International audienceThe objective of the current study was to propose a sensitivity analysis of a ...
In this paper, we propose a monolithic algorithm for the numerical solution of the electromechanics ...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
We developed a novel patient-specific computational model for the numerical simulation of ventricula...
The ventricular pressure profile is characteristic of the cardiac contraction progress and is useful...
International audienceThe ventricular pressure profile is characteristic of the cardiac contraction ...
International audienceThis work contributes to the systemic interpretation of clinical data for the ...
International audienceThis paper presents a model-based method for the analysis of regional myocardi...
A model for the contraction of the left ventricle (LV) is developed for a spheroidal geometry. The c...
International audienceObjectives: The objective of the current study is to assess the feasibility of...
Modeling of cardiac electro-mechanics can enhance the understanding of the physiology and pathophysi...
Computational modeling of ventricular electromechanics is considered to be among the most promising ...
AIM: The aim of this study is to develop a coupled three-dimensional computational model of cardiac ...
Verification of electro-mechanic models of the heart require a good amount of reliable, high resolut...
International audienceThe objective of the current study was to propose a sensitivity analysis of a ...
In this paper, we propose a monolithic algorithm for the numerical solution of the electromechanics ...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
We developed a novel patient-specific computational model for the numerical simulation of ventricula...