Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimuli to cells seeded on porous scaffolds. Cells grow on the scaffold surface but also by bridging the scaffold pores leading a fully filled scaffold following the scaffold's geometric characteristics. Current computational fluid dynamic approaches for tissue engineering bioreactor systems have been mostly carried out for empty scaffolds. The effect of 3D cell growth and extracellular matrix formation (termed in this study as neotissue growth), on its surrounding fluid flow field is a challenge yet to be tackled. In this work a combined approach was followed linking curvature driven cell growth to fluid dynamics modeling. The level-set method (LS...
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...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
The main challenge in tissue engineering consists in understanding and controlling the growth proces...
The main challenge in tissue engineering consists in understanding and controlling the growth proces...
peer reviewed3D porous scaffolds are frequently used in tissue engineering (TE) applications in comb...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
\u3cp\u3eMechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
\u3cp\u3eIn bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cel...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
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...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
The main challenge in tissue engineering consists in understanding and controlling the growth proces...
The main challenge in tissue engineering consists in understanding and controlling the growth proces...
peer reviewed3D porous scaffolds are frequently used in tissue engineering (TE) applications in comb...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
\u3cp\u3eMechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
\u3cp\u3eIn bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cel...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
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...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...