Pages that link to "Item:Q253564"
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The following pages link to Competition and natural selection in a mathematical model of cancer (Q253564):
Displaying 20 items.
- Mathematical model for cell competition: predator-prey interactions at the interface between two groups of cells in monolayer tissue (Q307591) (← links)
- Dynamics of a data based ovarian cancer growth and treatment model with time delay (Q330562) (← links)
- Computational analysis of the influence of the microenvironment on carcinogenesis (Q630961) (← links)
- Explicit separation of growth and motility in a new tumor cord model (Q1026617) (← links)
- Unexpected equilibria resulting from differing growth rates of subpopulations within heterogeneous tumors (Q1108960) (← links)
- What can be learned from a chaotic cancer model? (Q1715200) (← links)
- Evolution of uncontrolled proliferation and the angiogenic switch in cancer (Q1942586) (← links)
- Dynamics of competing heterogeneous clones in blood cancers explains multiple observations -- a mathematical modeling approach (Q1979616) (← links)
- A mathematical study of the influence of hypoxia and acidity on the evolutionary dynamics of cancer (Q2035804) (← links)
- Optimal strategies in the treatment of cancers in the Lotka-Volterra mathematical model of competition (Q2043626) (← links)
- A simulation of parental and glycolytic tumor phenotype competition predicts observed responses to pH changes and increased glycolysis after anti-VEGF therapy (Q2085134) (← links)
- A fractional mathematical model of breast cancer competition model (Q2213448) (← links)
- Predicting the results of competition between two breast cancer lines grown in 3-D spheroid culture (Q2241925) (← links)
- Effects of cell death-induced proliferation on a cell competition system (Q2328498) (← links)
- A rapid-mutation approximation for cell population dynamics (Q2380837) (← links)
- Modeling the VEGF-Bcl-2-CXCL8 pathway in intratumoral agiogenesis (Q2426395) (← links)
- The ecology and evolutionary biology of cancer: a review of mathematical models of necrosis and tumor cell diversity (Q2483820) (← links)
- A MATHEMATICAL MODEL OF INDUCED CANCER-ADAPTIVE IMMUNE SYSTEM COMPETITION (Q4911197) (← links)
- Short-range migration can alter evolutionary dynamics in solid tumors (Q5149449) (← links)
- Analytical solutions of virus propagation model in blockchain networks (Q6648810) (← links)