Perfusion bioreactors have shown great promise for tissue engineering applications providing a homogeneous and consistent distribution of nutrients and flow-induced shear stresses throughout tissue-engineered constructs. However, non uniform fluid-flow profiles found in the perfusion chamber entrance region have been shown to affect tissue-engineered construct quality characteristics during culture. In this study a whole perfusion and construct, three dimensional (3D) computational fluid dynamics approach was used in order to optimize a critical design parameter such as the location of the regular pore scaffolds within the perfusion bioreactor chamber. Computational studies were coupled to bioreactor experiments for a case-study flow rate. ...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
Perfusion bioreactors have shown great promise for tissue engineering applications providing a homog...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
Fluid flow dynamics and oxygen-concentration in 3D-printed scaffolds within perfusion bioreactors ar...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
\u3cp\u3eIn bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cel...
Fluid flow dynamics and oxygen-concentration in 3D-printed scaffolds within perfusion bioreactors ar...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
Perfusion bioreactors have shown great promise for tissue engineering applications providing a homog...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
Fluid flow dynamics and oxygen-concentration in 3D-printed scaffolds within perfusion bioreactors ar...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
\u3cp\u3eIn bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cel...
Fluid flow dynamics and oxygen-concentration in 3D-printed scaffolds within perfusion bioreactors ar...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...