This present thesis comprise two major parts both experimental and numerical study which have been conducted in four distinct steps as following: (1) Design, construction, and evaluation of control and hydrodynamic of a bioreactor system. (2) Visualization of fluid flow perfusion in the hollow fibre membrane bioreactor (HFMB) using a biomedical noninvasive imaging technique, i.e. positron emission tomography (PET). (3) Development of a mathematical model for analyzing a hybrid hollow fibre membrane bioreactor (hHFMB) and (4) Development of a dynamic and two-porous media model for analyzing the HFMB with the aid of computational fluid dynamics (CFD), specifically for bone tissue engineering application. The experimental part includes the ste...
Failure to grow thick (3D) implantable bone tissue is partly due to the lack of tissue vascularisati...
New experimental evidence shows that hollow fibre membrane bioreactor (HFMB) may be applied to grow ...
The development of functional and matured microvessels within constructed tissue is a great challeng...
This present thesis comprise two major parts both experimental and numerical study which have been c...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
Bioreactor system has been used in bone tissue engineering in order to simulate dynamic nature of bo...
Computer simulations can potentially be used to design, predict, and inform properties for tissue en...
Despite the significant advances in tissue engineering (TE) research there is still a very limited n...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
International audienceThe hollow fiber membrane bioreactor (HFMB) has been investigated for the cult...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
The purpose of this study is to improve the design of a bioreactor for growing bone and other three-...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
Despite the advances in the field of tissue engineering (TE), engineered tissue products that are pa...
Failure to grow thick (3D) implantable bone tissue is partly due to the lack of tissue vascularisati...
New experimental evidence shows that hollow fibre membrane bioreactor (HFMB) may be applied to grow ...
The development of functional and matured microvessels within constructed tissue is a great challeng...
This present thesis comprise two major parts both experimental and numerical study which have been c...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
Bioreactor system has been used in bone tissue engineering in order to simulate dynamic nature of bo...
Computer simulations can potentially be used to design, predict, and inform properties for tissue en...
Despite the significant advances in tissue engineering (TE) research there is still a very limited n...
To improve in vitro cell expansion and differentiation the use of bioreactor systems are being imple...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
International audienceThe hollow fiber membrane bioreactor (HFMB) has been investigated for the cult...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
The purpose of this study is to improve the design of a bioreactor for growing bone and other three-...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
Despite the advances in the field of tissue engineering (TE), engineered tissue products that are pa...
Failure to grow thick (3D) implantable bone tissue is partly due to the lack of tissue vascularisati...
New experimental evidence shows that hollow fibre membrane bioreactor (HFMB) may be applied to grow ...
The development of functional and matured microvessels within constructed tissue is a great challeng...