Pages that link to "Item:Q2832111"
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The following pages link to An evolutionary model of tumor cell kinetics and the emergence of molecular heterogeneity driving Gompertzian growth (Q2832111):
Displaying 13 items.
- Gompertzian growth as a consequence of tumor heterogeneity (Q759669) (← links)
- The two-step exponential decay reaction network: analysis of the solutions and relation to epidemiological SIR models with logistic and Gompertz type infection contact patterns (Q830886) (← links)
- Capitalizing on competition: an evolutionary model of competitive release in metastatic castration resistant prostate cancer treatment (Q1714310) (← links)
- Extinction of bistable populations is affected by the shape of their initial spatial distribution (Q2079021) (← links)
- A microenvironment based model of antimitotic therapy of Gompertzian tumor growth (Q2426326) (← links)
- Evolutionary dynamics of the Warburg effect: glycolysis as a collective action problem among cancer cells (Q2632381) (← links)
- COVID-19 vaccine incentive scheduling using an optimally controlled reinforcement learning model (Q2683567) (← links)
- The Gompertz model revisited and modified using reaction networks: Mathematical analysis (Q5050589) (← links)
- Growth rate, growth curve and growth prediction of tumour in the competitive model (Q5069328) (← links)
- Why Increase of Heterogeneity Signals Pre-Deterioration During Tumor Progression: A Unified Mathematical Model (Q6045344) (← links)
- Impact of resistance on therapeutic design: a Moran model of cancer growth (Q6124362) (← links)
- Games and the treatment convexity of cancer (Q6204713) (← links)
- Quantifying collective motion patterns in mesenchymal cell populations using topological data analysis and agent-based modeling (Q6550776) (← links)