Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to enhance tissue formation in tissue engineered heart valves. Animal studies showed excellent functionality of these valves in the pulmonary position. However, they lack mechanical strength for implantation in the high-pressure aortic position. Improving the in-vitro conditioning protocol is an important step towards the use of these valves as aortic heart valve replacements. In this study, the relevance of large strains to improve the mechanical conditioning protocol was investigated. Methods: Utilizing a newly developed device, engineered heart valve tissue was exposed to increasing cyclic strain in-vitro. Tissue formation and mechanical proper...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Abstract—Current mechanical conditioning approaches for heart valve tissue engineering concentrate o...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Background: Exposing the developing tissue to flow and pressure in a bioreactor has been shown to en...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
Abstract—Current mechanical conditioning approaches for heart valve tissue engineering concentrate o...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
In cardiovascular tissue engineering, mechanical stimulation of tissue-engineered constructs is know...
Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicki...