Pages that link to "Item:Q1617423"
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The following pages link to Mathematical modelling of fibre-enhanced perfusion inside a tissue-engineering bioreactor (Q1617423):
Displaying 14 items.
- Mathematical model of growth factor driven haptotaxis and proliferation in a tissue engineering scaffold (Q376427) (← links)
- Fluid dynamics and oxygen transport in a micro-bioreactor with a tissue engineering scaffold (Q1007958) (← links)
- Design criteria for a printed tissue engineering construct: A mathematical homogenization approach (Q1624434) (← links)
- Nutrient transport through deformable cylindrical scaffold inside a bioreactor: an application to tissue engineering (Q1625117) (← links)
- Relevant biological processes for tissue development with stem cells and their mechanistic modeling: a review (Q1644717) (← links)
- An integro-partial differential equation for modeling biofluids flow in fractured biomaterials (Q1670661) (← links)
- Mathematical modelling of cell layer growth in a hollow fibre bioreactor (Q2400935) (← links)
- Optimal flow conditions of a tracheobronchial model to reengineer lung structures (Q2410595) (← links)
- Mathematical modelling of a liver hollow fibre bioreactor (Q2421763) (← links)
- Finite element model for nutrient distribution analysis of a hollow fiber membrane bioreactor (Q2896344) (← links)
- Multiphase modelling of the influence of fluid flow and chemical concentration on tissue growth in a hollow fibre membrane bioreactor (Q2937028) (← links)
- On the boundary layer structure near a highly permeable porous interface (Q2973659) (← links)
- Fluid and mass transport modelling to drive the design of cell-packed hollow fibre bioreactors for tissue engineering applications (Q3145852) (← links)
- (Q4671454) (← links)