Pages that link to "Item:Q2035804"
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The following pages link to A mathematical study of the influence of hypoxia and acidity on the evolutionary dynamics of cancer (Q2035804):
Displaying 11 items.
- Hypoxia and reoxygenation: a pressure for mutant p53 cell selection and tumour progression (Q886696) (← links)
- The role of spatial variations of abiotic factors in mediating intratumour phenotypic heterogeneity (Q1642628) (← links)
- Evolutionary dynamics in vascularised tumours under chemotherapy: mathematical modelling, asymptotic analysis and numerical simulations (Q2022476) (← links)
- Effective interface conditions for continuum mechanical models describing the invasion of multiple cell populations through thin membranes (Q2060800) (← 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)
- Spatio-temporal modelling of phenotypic heterogeneity in tumour tissues and its impact on radiotherapy treatment (Q2109231) (← links)
- Tumor microenvironment as a metapopulation model: the effects of angiogenesis, emigration and treatment modalities (Q2146770) (← links)
- A mathematical dissection of the adaptation of cell populations to fluctuating oxygen levels (Q2209433) (← links)
- Evolutionary dynamics of the Warburg effect: glycolysis as a collective action problem among cancer cells (Q2632381) (← links)
- A phenotype-structured model to reproduce the avascular growth of a tumor and its interaction with the surrounding environment (Q2670133) (← links)
- Stochastic fluctuations drive non-genetic evolution of proliferation in clonal cancer cell populations (Q2680369) (← links)