Objectives: Replacement aortic valves endeavor to mimic native valve function at the organ, tissue, and in the case of bioprosthetic valves, the cellular levels. There is a wealth of information about valve macro and micro structure; however, there presently is limited information on the morphology of the whole valve fiber architecture. The objective of this study was to provide qualitative and quantitative analyses of whole valve and leaflet fiber bundle branching patterns using a novel imaging system. Methods: We developed a custom automated microscope system with motor and imaging control. Whole leaflets (n = 25) were imaged at high resolution (e.g. 30,000620,000 pixels) using elliptically polarized light to enhance contrast between stru...
International audienceThe visualization of bioprosthesis leaflet morphology might help to better und...
The aorta possesses a micro-architecture that imparts and supports a high degree of compliance and m...
Understanding the response of tissue structures to mechanical stress is crucial for optimization of ...
Replacement aortic valves endeavor to mimic native valve function at the organ, tissue, and in the c...
<p>Images of three representative leaflets (left) along with traces of the major fiber bundles (righ...
<p>(<b>A</b>) Image of typical fiber bundle (orange) and membrane (blue, blue-green) structures show...
Disorganization of the valve extracellular matrix (ECM) is a hallmark of calcific aortic valve disea...
Living tissues show an adaptive response to mechanical loading by changing their internal structure ...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
The glutaraldehyde-processed porcine aortic heart valve is similar in its microscopic organization t...
There is a significant gap in our knowledge of engineered heart valve tissue (EHVT) development rega...
The effects of valve leaflet mechanical properties on the dynamic geometry and function of the aorti...
There have been relatively few examinations of the microstructure of the human ascending aorta an...
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 ...
International audienceThe visualization of bioprosthesis leaflet morphology might help to better und...
The aorta possesses a micro-architecture that imparts and supports a high degree of compliance and m...
Understanding the response of tissue structures to mechanical stress is crucial for optimization of ...
Replacement aortic valves endeavor to mimic native valve function at the organ, tissue, and in the c...
<p>Images of three representative leaflets (left) along with traces of the major fiber bundles (righ...
<p>(<b>A</b>) Image of typical fiber bundle (orange) and membrane (blue, blue-green) structures show...
Disorganization of the valve extracellular matrix (ECM) is a hallmark of calcific aortic valve disea...
Living tissues show an adaptive response to mechanical loading by changing their internal structure ...
The tricuspid valve (TV) is composed of three leaflets that coapt during systole to prevent deoxygen...
The glutaraldehyde-processed porcine aortic heart valve is similar in its microscopic organization t...
There is a significant gap in our knowledge of engineered heart valve tissue (EHVT) development rega...
The effects of valve leaflet mechanical properties on the dynamic geometry and function of the aorti...
There have been relatively few examinations of the microstructure of the human ascending aorta an...
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 ...
International audienceThe visualization of bioprosthesis leaflet morphology might help to better und...
The aorta possesses a micro-architecture that imparts and supports a high degree of compliance and m...
Understanding the response of tissue structures to mechanical stress is crucial for optimization of ...