Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by opening and closing of the leaflets, which are supported in their functions by the chordae tendineae (CT). The leaflets and CT are primarily composed of collagen fibers that act as the load-bearing component of the tissue microstructures. At the CT-leaflet insertion, the collagen fiber architecture is complex, and has been of increasing focus in the previous literature. However, these previous studies have not been able to quantify the load-dependent changes in the tissues collagen fiber orientations and alignments. In the present study, we address this gap in knowledge by quantifying the changes in the collagen fiber architecture of the mitr...
Valvular heart diseases are complex disorders, varying in pathophysiological mechanism and affected ...
Load-bearing soft tissues predominantly consist of collagen and exhibit anisotropic, non-linear visc...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
The extracellular matrix of the atrioventricular (AV) valves' leaflets has a key role in the ability...
When implanted inside the body, bioprosthetic heart valve leaflets experience a variety of cyclic me...
Proper blood flow through the atrioventricular heart valves (AHVs) relies on the holistic function o...
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) are composed of structurally complex and morphologically hetero...
Valvular heart diseases are complex disorders, varying in pathophysiological mechanism and affected ...
Heart valves demonstrate a characteristic stress-strain curve with a low slope portion, in which col...
The hemodynamic functionality of heart valves strongly depends on the distribution of collagen fiber...
The facilitation of proper blood flow through the heart depends on proper function of heart valve co...
Valvular heart diseases are complex disorders, varying in pathophysiological mechanism and affected ...
Load-bearing soft tissues predominantly consist of collagen and exhibit anisotropic, non-linear visc...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...
Atrioventricular heart valves (AHVs) regulate the unidirectional flow of blood through the heart by ...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
The extracellular matrix of the atrioventricular (AV) valves' leaflets has a key role in the ability...
When implanted inside the body, bioprosthetic heart valve leaflets experience a variety of cyclic me...
Proper blood flow through the atrioventricular heart valves (AHVs) relies on the holistic function o...
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) are composed of structurally complex and morphologically hetero...
Valvular heart diseases are complex disorders, varying in pathophysiological mechanism and affected ...
Heart valves demonstrate a characteristic stress-strain curve with a low slope portion, in which col...
The hemodynamic functionality of heart valves strongly depends on the distribution of collagen fiber...
The facilitation of proper blood flow through the heart depends on proper function of heart valve co...
Valvular heart diseases are complex disorders, varying in pathophysiological mechanism and affected ...
Load-bearing soft tissues predominantly consist of collagen and exhibit anisotropic, non-linear visc...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...