The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in the context of regenerative medicine. Still, there is a lack of bioreactor systems that allow the cultivation of multiple independent samples under different conditions while ensuring comprehensive control over the mechanical environment. Therefore, we developed a miniaturized, parallelizable perfusion bioreactor system with two different bioreactor chambers. Pressure sensors were also implemented to determine the permeability of biomaterials which allows us to approximate the shear stress conditions. To characterize the flow velocity and shear stress profile of a porous scaffold in both bioreactor chambers, a computational fluid dynamics anal...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Perfusion culture holds great potential in tissue engineering as an advanced culture technique. This...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Perfusion culture holds great potential in tissue engineering as an advanced culture technique. This...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
A three-dimensional computational fluid dynamics- (CFD-) model based on a differential pressure lami...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Perfusion culture holds great potential in tissue engineering as an advanced culture technique. This...