Pages that link to "Item:Q1617498"
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The following pages link to Mathematical model for G-CSF administration after chemotherapy (Q1617498):
Displaying 19 items.
- A mathematical model of granulopoiesis incorporating the negative feedback dynamics and kinetics of G-CSF/neutrophil binding and internalization (Q518219) (← links)
- Neutrophil dynamics during concurrent chemotherapy and G-CSF administration: mathematical modelling guides dose optimisation to minimise neutropenia (Q739757) (← links)
- Fluid-retention side-effects of the chemotherapy-supportive treatment interleukin-11: mathematical modelling of putative underlying mechanisms (Q883746) (← links)
- A mathematical model for reconstitution of granulopoiesis after high dose chemotherapy with autologous stem cell transplantation (Q1412039) (← links)
- Neutrophil dynamics after chemotherapy and G-CSF: the role of pharmacokinetics in shaping the response (Q1790884) (← links)
- Mathematical modeling of granulocyte reconstitution after high-dose chemotherapy with stem cell support: effect of post-transplant G-CSF treatment (Q2186539) (← links)
- The complex effect of granulocyte colony-stimulating factor on human granulopoiesis analyzed by a new physiologically-based mathematical model (Q2193145) (← links)
- Cost-effective G-CSF therapy strategies for cyclical neutropenia: mathematical modelling based hypotheses (Q2194972) (← links)
- Characterizing chemotherapy-induced neutropenia and monocytopenia through mathematical modelling (Q2195623) (← links)
- Neutrophil dynamics in response to chemotherapy and G-CSF (Q2263503) (← links)
- Analytical solution and exposure analysis of a pharmacokinetic model with simultaneous elimination pathways and endogenous production: the case of multiple dosing administration (Q2334387) (← links)
- G-CSF control of neutrophils dynamics in the blood (Q2426363) (← links)
- Understanding, treating and avoiding hematological disease: better medicine through mathematics? (Q2516452) (← links)
- Mathematical study on kinetics of hematopoietic stem cells – theoretical conditions for successful transplantation (Q3304498) (← links)
- Chemotherapeutic Effects on Hematopoiesis: A Mathematical Model (Q4226588) (← links)
- Blood Cell Dynamics: Half of a Century of Modelling (Q4607480) (← links)
- MATHEMATICAL CHARACTERIZATION OF HETEROGENEITY IN A CANCER STEM CELL DRIVEN TUMOR GROWTH MODEL WITH NONLINEAR SELF-RENEWAL (Q5003130) (← links)
- Bistability and State Transition of a Delay Differential Equation Model of Neutrophil Dynamics (Q5246683) (← links)
- Improving Cancer Therapy by Doxorubicin and Granulocyte Colony-Stimulating Factor: Insights from a Computerized Model of Human Granulopoiesis (Q5744782) (← links)