Pages that link to "Item:Q1921144"
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The following pages link to Explicit solutions of a simplified model of capillary sprout growth during tumor angiogenesis (Q1921144):
Displaying 15 items.
- Mathematical model of hyperbaric oxygen therapy applied to chronic diabetic wounds (Q611953) (← links)
- Computational modeling of tumor-induced angiogenesis (Q724790) (← links)
- Computational approaches to solving equations arising from wound healing (Q841793) (← links)
- A cell-based model of endothelial cell migration, proliferation and maturation during corneal angiogenesis (Q977689) (← links)
- Mathematical models for tumour angiogenesis: Numerical simulations and nonlinear wave solutions (Q1346437) (← links)
- Steady-state solutions of a generic model for the formation of capillary networks (Q1585524) (← links)
- Modelling and mathematical problems related to tumor evolution and its interaction with the immune system (Q1585820) (← links)
- Modelling skin wound healing angiogenesis: a review (Q1712858) (← links)
- A simple mechanistic model of sprout spacing in tumour-associated angiogenesis (Q1788120) (← links)
- A review of mathematical models for the formation of vascular networks (Q1790801) (← links)
- Explicit solutions of a simplified model of capillary sprout growth during tumour angiogenesis (Q1904518) (← links)
- A viscoelastic model of blood capillary extension and regression: derivation, analysis, and simulation (Q2436602) (← links)
- Iterative operator splitting method for capillary formation model in tumor angiogenesis problem: Analysis and application (Q2892471) (← links)
- Mathematical Modeling of VEGF Binding, Production, and Release in Angiogenesis (Q2958784) (← links)
- Numerical solution of a mathematical model for capillary formation in tumor angiogenesis <i>via</i> the tau method (Q5302286) (← links)