A theoretical fluid mechanical model is proposed for the investigation of myocardial perfusion in healthy and stenotic conditions. The model hinges on Terzaghi’s consolidation theory and reformulates the related unsteady flow equation for the simulation of the swelling–drainage alternation characterizing the diastolic–systolic phases. When compared with the outcome of experimental in vivo observations in terms of left ventricle transmural perfusion ratio (T.P.R.), the analytical solution provided by the present study for the time-dependent blood pressure and flow rate across the ventricle wall proves to consistently reproduce the basic mechanisms of both healthy and ischemic perfusion. Therefore, it could constitute a useful interpretative ...
International audienceThe human heart is enclosed in the pericardial cavity. The pericardium consist...
The purpose of the study is to describe a method for the investigation of myocardial kinetics (wall ...
International audienceThis paper presents a model-based method for the analysis of regional myocardi...
A theoretical fluid mechanical model is proposed for the investigation of myocardial perfusion in he...
International audienceIn this paper, we adapt a previously developed poromechanical formulation to m...
Abstract The aim of this paper is to introduce a new mathematical model that simulates myocardial bl...
Myocardial supply changes to accommodate the variation of myocardial demand across the heart wall to...
Background Microcirculation is a decisive factor in tissue reperfusion inadequacy following myocardi...
Recent developments on the grading of cardiac pathologies suggest flow-related metrics for a deeper ...
Simulation is a useful tool in cardiac SPECT to assess quantification algorithms. However, simple eq...
This work presents a new mathematical model to describe cardiac perfusion in the myocardium as acqui...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Myocardial infarction causes part of the left ventricle muscle to not receive adequate oxygen supply...
A new lumped-parameter model for coronary hemodynamics is developed. This model is developed for the...
In the weeks and months following a heart attack, the morphological structure of the left ventricle ...
International audienceThe human heart is enclosed in the pericardial cavity. The pericardium consist...
The purpose of the study is to describe a method for the investigation of myocardial kinetics (wall ...
International audienceThis paper presents a model-based method for the analysis of regional myocardi...
A theoretical fluid mechanical model is proposed for the investigation of myocardial perfusion in he...
International audienceIn this paper, we adapt a previously developed poromechanical formulation to m...
Abstract The aim of this paper is to introduce a new mathematical model that simulates myocardial bl...
Myocardial supply changes to accommodate the variation of myocardial demand across the heart wall to...
Background Microcirculation is a decisive factor in tissue reperfusion inadequacy following myocardi...
Recent developments on the grading of cardiac pathologies suggest flow-related metrics for a deeper ...
Simulation is a useful tool in cardiac SPECT to assess quantification algorithms. However, simple eq...
This work presents a new mathematical model to describe cardiac perfusion in the myocardium as acqui...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Myocardial infarction causes part of the left ventricle muscle to not receive adequate oxygen supply...
A new lumped-parameter model for coronary hemodynamics is developed. This model is developed for the...
In the weeks and months following a heart attack, the morphological structure of the left ventricle ...
International audienceThe human heart is enclosed in the pericardial cavity. The pericardium consist...
The purpose of the study is to describe a method for the investigation of myocardial kinetics (wall ...
International audienceThis paper presents a model-based method for the analysis of regional myocardi...