Mechanical interplay between the adjacent ventricles is one of the principal modulators of physiopathological heart function, and the underlying mechanisms of interaction are only partially understood, hence hampering clinically useful interpretation of imaging data. In order to characterize the influence of chamber geometry on ventricular coupling, the ventricles and septum are modeled as portions of ellipsoidal shells, and configuration is derived as a function of pressure gradients by combining shell element equilibrium equations through static boundary conditions applied at the sulcus. Diastolic volume (v) surfaces are calculated as a function of pressure (p), contralateral pressure (clp) and intrathoracic pressure (pt) and match litera...
Cardiac trabeculae are cylindrical structures arranged in a complex shape which cover the endocardia...
Understanding the interaction between the valves and walls of the heart is important in assessing an...
A porous medium finite element model of the passive left ventricle is presented. The model is axisym...
Mechanical interplay between the adjacent ventricles is one of the principal modulators of physiopat...
Ventricular interdependence is an important part of heart function, and hence a key mediator of most...
Ventricular interdependence is one of the principal controllers of heart function, and hence a key m...
Mechanical interplay between the adjacent ventricles is one of the principal modulators of physiopat...
A unified theoretical model of the right and left ventricles and the surrounding pericardium is prop...
The left ventricle (LV) was modeled by two confocal ellipsoids truncated in a plane corresponding to...
Understanding the underlying feedback mechanisms of fluid/solid coupling and the role it plays in he...
The normally functioning heart delivers a steady supply of oxygen and nutrients to the body over a b...
A geometrical model for the left ventricle is developed consisting of a nested set of truncated elli...
Complexity of the geometry and structure of the heart hampers easy modeling of cardiac mechanics. Th...
Cardiac trabeculae are cylindrical structures arranged in a complex shape which cover the endocardia...
Understanding the interaction between the valves and walls of the heart is important in assessing an...
A porous medium finite element model of the passive left ventricle is presented. The model is axisym...
Mechanical interplay between the adjacent ventricles is one of the principal modulators of physiopat...
Ventricular interdependence is an important part of heart function, and hence a key mediator of most...
Ventricular interdependence is one of the principal controllers of heart function, and hence a key m...
Mechanical interplay between the adjacent ventricles is one of the principal modulators of physiopat...
A unified theoretical model of the right and left ventricles and the surrounding pericardium is prop...
The left ventricle (LV) was modeled by two confocal ellipsoids truncated in a plane corresponding to...
Understanding the underlying feedback mechanisms of fluid/solid coupling and the role it plays in he...
The normally functioning heart delivers a steady supply of oxygen and nutrients to the body over a b...
A geometrical model for the left ventricle is developed consisting of a nested set of truncated elli...
Complexity of the geometry and structure of the heart hampers easy modeling of cardiac mechanics. Th...
Cardiac trabeculae are cylindrical structures arranged in a complex shape which cover the endocardia...
Understanding the interaction between the valves and walls of the heart is important in assessing an...
A porous medium finite element model of the passive left ventricle is presented. The model is axisym...