AbstractIn this study, we evaluated the hypothesis that the constituent fibers follow an affine deformation kinematic model for planar collagenous tissues. Results from two experimental datasets were utilized, taken at two scales (nanometer and micrometer), using mitral valve anterior leaflet (MVAL) tissues as the representative tissue. We simulated MVAL collagen fiber network as an ensemble of undulated fibers under a generalized two-dimensional deformation state, by representing the collagen fibrils based on a planar sinusoidally shaped geometric model. The proposed approach accounted for collagen fibril amplitude, crimp period, and rotation with applied macroscopic tissue-level deformation. When compared to the small angle x-ray scatteri...
International audienceBiomechanics of the extracellular matrix in arteries determines their macrosco...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
The behavior of mitral valve tissue is very complex because of its material composition, geometric l...
In this study, we evaluated the hypothesis that the constituent fibers follow an affine deformation ...
Living tissues show an adaptive response to mechanical loading by changing their internal structure ...
To optimize the mechanical properties and integrity of tissue-engineered aortic heart valves, it is ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
The mitral valve (MV) is a complex anatomical structure whose function involves a delicate force bal...
Accurate constitutive models are required to gain further insight into the mechanical behavior of ca...
The hemodynamic functionality of heart valves strongly depends on the distribution of collagen fiber...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
When implanted inside the body, bioprosthetic heart valve leaflets experience a variety of cyclic me...
International audienceBiomechanics of the extracellular matrix in arteries determines their macrosco...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
The behavior of mitral valve tissue is very complex because of its material composition, geometric l...
In this study, we evaluated the hypothesis that the constituent fibers follow an affine deformation ...
Living tissues show an adaptive response to mechanical loading by changing their internal structure ...
To optimize the mechanical properties and integrity of tissue-engineered aortic heart valves, it is ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
The mitral valve (MV) is a complex anatomical structure whose function involves a delicate force bal...
Accurate constitutive models are required to gain further insight into the mechanical behavior of ca...
The hemodynamic functionality of heart valves strongly depends on the distribution of collagen fiber...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
Understanding collagen fiber remodeling is desired to optimize the mechanical conditioning protocols...
When implanted inside the body, bioprosthetic heart valve leaflets experience a variety of cyclic me...
International audienceBiomechanics of the extracellular matrix in arteries determines their macrosco...
Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearingstruct...
The behavior of mitral valve tissue is very complex because of its material composition, geometric l...