Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engineering efforts. However the underlying mechanisms by which external mechanical stimuli regulate cells and tissues are not known. This is particularly relevant in the area of heart valve tissue engineering (HVTE) owing to the intense hemodynamic environments that surround native valves. Some studies suggest that oscillatory shear stress (OSS) caused by steady flow and scaffold flexure play a critical role in engineered tissue formation derived from bone marrow derived stem cells (BMSCs). In addition, scaffold flexure may enhance nutrient (e.g. oxygen, glucose) transport. In this study, we computationally quantified the i) magnitude of fluid-in...
The aortic valve (AV) is essentially a passive organ that permits unidirectional blood flow from the...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...
Cardiac valves are dynamic, sophisticated structures which interact closely with the surrounding hem...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Previous efforts in heart valve tissue engineering demonstrated that the combined effect of cyclic f...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Engineered valvular tissues are cultured dynamically, and involve specimen movement. We previously d...
Heart valve tissue engineering (HVTE) stands as a potential intervention that could reduce the preva...
It was previously demonstrated that combined flexure and flow in vitro conditioning augments enginee...
It was previously demonstrated that combined flexure and flow in vitro conditioning augments enginee...
Oscillatory shear stress (OSS), caused by time-varying flow environments, may play a critical role i...
Oscillatory shear stress (OSS), caused by time-varying flow environments, may play a critical role i...
The aortic valve (AV) is essentially a passive organ that permits unidirectional blood flow from the...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...
Cardiac valves are dynamic, sophisticated structures which interact closely with the surrounding hem...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Previous efforts in heart valve tissue engineering demonstrated that the combined effect of cyclic f...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Engineered valvular tissues are cultured dynamically, and involve specimen movement. We previously d...
Heart valve tissue engineering (HVTE) stands as a potential intervention that could reduce the preva...
It was previously demonstrated that combined flexure and flow in vitro conditioning augments enginee...
It was previously demonstrated that combined flexure and flow in vitro conditioning augments enginee...
Oscillatory shear stress (OSS), caused by time-varying flow environments, may play a critical role i...
Oscillatory shear stress (OSS), caused by time-varying flow environments, may play a critical role i...
The aortic valve (AV) is essentially a passive organ that permits unidirectional blood flow from the...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...
Cardiac valves are dynamic, sophisticated structures which interact closely with the surrounding hem...