AbstractSupported by the wide range of available medical data available, cardiac biomechanical modeling has exhibited significant potential to improve our understanding of heart function and to assisting in patient diagnosis and treatment. A critical step towards the development of accurate patient-specific models is the deployment of boundary conditions capable of integrating data into the model to enhance model fidelity. This step is often hindered by sparse or noisy data that, if applied directly, can introduce non-physiological forces and artifacts into the model. To address these issues, in this paper we propose novel boundary conditions which aim to balance the accurate use of data with physiological boundary forces and model outcomes...
Models of cardiac mechanics are increasingly used to investigate cardiac physiology. These models ar...
Understanding the myocardial biomechanics of the left ventricle (LV) in health and disease is import...
A biomechanical simulation framework has been developed which allows to simulate the contraction of ...
International audienceSupported by the wide range of available medical data available, cardiac biome...
AbstractSupported by the wide range of available medical data available, cardiac biomechanical model...
Detailed models of the biomechanics of the heart are important both for developing improved interven...
SUMMARY: Finite stress and strain analyses of the heart provide insight into the biomechanics of m...
: We propose a mathematical and numerical model for the simulation of the heart function that couple...
To model cardiac mechanics effectively, various mechanical characteristics of cardiac muscle tissue ...
Computational cardiac mechanical models, individualized to the patient, have the potential to elucid...
International audienceAdvances in medical imaging and image processing are paving the way for person...
International audienceIndividually personalized computational models of heart mechanics can be used ...
Cardiac mechanics is a branch of science that deals with forces, kinematics, and material properties...
The goal of this dissertation was to develop a realistic and patient-specific computational model of...
Models of cardiac mechanics are increasingly used to investigate cardiac physiology. These models ar...
Understanding the myocardial biomechanics of the left ventricle (LV) in health and disease is import...
A biomechanical simulation framework has been developed which allows to simulate the contraction of ...
International audienceSupported by the wide range of available medical data available, cardiac biome...
AbstractSupported by the wide range of available medical data available, cardiac biomechanical model...
Detailed models of the biomechanics of the heart are important both for developing improved interven...
SUMMARY: Finite stress and strain analyses of the heart provide insight into the biomechanics of m...
: We propose a mathematical and numerical model for the simulation of the heart function that couple...
To model cardiac mechanics effectively, various mechanical characteristics of cardiac muscle tissue ...
Computational cardiac mechanical models, individualized to the patient, have the potential to elucid...
International audienceAdvances in medical imaging and image processing are paving the way for person...
International audienceIndividually personalized computational models of heart mechanics can be used ...
Cardiac mechanics is a branch of science that deals with forces, kinematics, and material properties...
The goal of this dissertation was to develop a realistic and patient-specific computational model of...
Models of cardiac mechanics are increasingly used to investigate cardiac physiology. These models ar...
Understanding the myocardial biomechanics of the left ventricle (LV) in health and disease is import...
A biomechanical simulation framework has been developed which allows to simulate the contraction of ...