<div><p>The need for efficient and controlled expansion of cell populations is paramount in tissue engineering. Hollow fibre bioreactors (HFBs) have the potential to meet this need, but only with improved understanding of how operating conditions and cell seeding strategy affect cell proliferation in the bioreactor. This study is designed to assess the effects of two key operating parameters (the flow rate of culture medium into the fibre lumen and the fluid pressure imposed at the lumen outlet), together with the cell seeding distribution, on cell population growth in a single-fibre HFB. This is achieved using mathematical modelling and numerical methods to simulate the growth of cell aggregates along the outer surface of the fibre in resp...
International audienceBy favoring cell proliferation and differentiation, perfusion bioreactors prov...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
A mathematical model was developed for mesenchymal stromal cell (MSC) growth in a packed bed bioreac...
The need for efficient and controlled expansion of cell populations is paramount in tissue engineeri...
The need for efficient and controlled expansion of cell populations is paramount in tissue engineeri...
Expanding cell populations extracted from patients or animals is essential to the process of tissue ...
Generating autologous tissue grafts of a clinically useful volume requires efficient and controlled ...
Generating autologous tissue grafts of a clinically useful volume requires efficient and controlled ...
A mathematical model describing the dynamics of mammalian cell growth in hollow fibre bioreactor ope...
We present a simplified two-dimensional model of fluid flow, solute transport, and cell distribution...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
International audienceThe hollow fiber membrane bioreactor (HFMB) has been investigated for the cult...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
International audienceBy favoring cell proliferation and differentiation, perfusion bioreactors prov...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
A mathematical model was developed for mesenchymal stromal cell (MSC) growth in a packed bed bioreac...
The need for efficient and controlled expansion of cell populations is paramount in tissue engineeri...
The need for efficient and controlled expansion of cell populations is paramount in tissue engineeri...
Expanding cell populations extracted from patients or animals is essential to the process of tissue ...
Generating autologous tissue grafts of a clinically useful volume requires efficient and controlled ...
Generating autologous tissue grafts of a clinically useful volume requires efficient and controlled ...
A mathematical model describing the dynamics of mammalian cell growth in hollow fibre bioreactor ope...
We present a simplified two-dimensional model of fluid flow, solute transport, and cell distribution...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
International audienceThe hollow fiber membrane bioreactor (HFMB) has been investigated for the cult...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
International audienceBy favoring cell proliferation and differentiation, perfusion bioreactors prov...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
A mathematical model was developed for mesenchymal stromal cell (MSC) growth in a packed bed bioreac...