Pages that link to "Item:Q1569917"
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The following pages link to A mathematical model to study the effects of drug resistance and vasculature on the response of solid tumors to chemotherapy (Q1569917):
Displaying 16 items.
- Application of collocation method for solving a parabolic-hyperbolic free boundary problem which models the growth of tumor with drug application (Q2977953) (← links)
- A MODEL AT THE MACROSCOPIC SCALE OF PROSTATE TUMOR GROWTH UNDER INTERMITTENT ANDROGEN SUPPRESSION (Q3400124) (← links)
- A PARABOLIC–HYPERBOLIC FREE BOUNDARY PROBLEM MODELLING TUMOR TREATMENT WITH VIRUS (Q3439948) (← links)
- Mathematical model of cancer growth controled by metronomic chemotherapies (Q3451669) (← links)
- A FREE BOUNDARY PROBLEM MODELLING CANCER RADIOVIROTHERAPY (Q3502901) (← links)
- Mathematical modelling of tumour growth and treatment (Q4638230) (← links)
- (Q4901159) (← links)
- A critical virus production rate for efficiency of oncolytic virotherapy (Q5056748) (← links)
- Mathematical analysis and simulation study of a phase-field model of prostate cancer growth with chemotherapy and antiangiogenic therapy effects (Q5127160) (← links)
- Optimal control of cytotoxic and antiangiogenic therapies on prostate cancer growth (Q5164240) (← links)
- MATHEMATICAL MODELING OF PROSTATE TUMOR GROWTH UNDER INTERMITTENT ANDROGEN SUPPRESSION WITH PARTIAL DIFFERENTIAL EQUATIONS (Q5322609) (← links)
- MODELLING THE RESPONSE OF VASCULAR TUMOURS TO CHEMOTHERAPY: A MULTISCALE APPROACH (Q5485822) (← links)
- A mathematical model of prostate tumor growth under hormone therapy with mutation inhibitor (Q5962228) (← links)
- Numerical convergence and stability analysis for a nonlinear mathematical model of prostate cancer (Q6066573) (← links)
- Impact of resistance on therapeutic design: a Moran model of cancer growth (Q6124362) (← links)
- A mathematical model to study low-dose metronomic scheduling for chemotherapy (Q6566663) (← links)