Pages that link to "Item:Q1817442"
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The following pages link to Growth of necrotic tumors in the presence and absence of inhibitors (Q1817442):
Displaying 50 items.
- Analysis for a free boundary problem modeling tumor therapy (Q2505262) (← links)
- Global existence for a parabolic-hyperbolic free boundary problem modelling tumor growth (Q2508055) (← links)
- On the justification of the quasistationary approximation of several parabolic moving boundary problems. Part I (Q2510858) (← links)
- Spatial invasion dynamics on random and unstructured meshes: implications for heterogeneous tumor populations (Q2632758) (← links)
- Analysis of mathematical models for the growth of tumors with time delays in cell proliferation (Q2644031) (← links)
- Symmetry-breaking bifurcation of analytic solutions to free boundary problems: An application to a model of tumor growth (Q2701672) (← links)
- Tumour dynamics and necrosis: Surface tension and stability (Q2732648) (← links)
- Intensified doxorubicin-based regimen efficacy in residual non-Hodgkin's lymphoma disease: towards a computationally supported treatment improvement (Q2788513) (← links)
- Ritz-Galerkin method for solving a parabolic equation with non-local and time-dependent boundary conditions (Q2800537) (← links)
- Direct and inverse problem for the parabolic equation with initial value and time-dependent boundaries (Q2805640) (← links)
- The Steady State of Multicellular Tumour Spheroids: A Modelling Challenge (Q2820380) (← links)
- Optimisation of Cancer Drug Treatments Using Cell Population Dynamics (Q2820387) (← links)
- Asymptotic behavior of solutions of a free boundary problem modeling the growth of tumors with fluid-like tissue under the action of inhibitors (Q2847034) (← links)
- Modeling the evolution of a tumoral multicellular spheroid as a two-fluid Bingham-like system (Q2868744) (← links)
- Models of Cell Motion and Tissue Growth (Q3300478) (← links)
- Analysis of a time-delayed mathematical model for tumour growth with an almost periodic supply of external nutrients (Q3300902) (← links)
- Stability and instability of Liapunov-Schmidt and Hopf bifurcation for a free boundary problem arising in a tumor model (Q3533834) (← links)
- A free boundary problem for a singular system of differential equations: An application to a model of tumor growth (Q4417274) (← links)
- Qualitative analysis of a free boundary problem for tumor growth under the action of periodic external inhibitors (Q4600688) (← links)
- Mathematical modelling of tumour growth and treatment (Q4638230) (← links)
- ON THE EXISTENCE OF SPATIALLY PATTERNED DORMANT MALIGNANCIES IN A MODEL FOR THE GROWTH OF NON-NECROTIC VASCULAR TUMORS (Q4798877) (← links)
- A Free Boundary Problem for an Elliptic–Parabolic System: Application to a Model of Tumor Growth (Q4807597) (← links)
- Analysis of a time-delayed mathematical model for tumour growth with inhibitors (Q4916344) (← links)
- A COMPARISON OF THE ROLES OF LOCALISED AND NONLOCALISED GROWTH FACTORS IN SOLID TUMOUR GROWTH (Q4933722) (← links)
- A free boundary problem arising from DCIS mathematical model (Q4977825) (← links)
- Discrete and Continuum Models for the Evolutionary and Spatial Dynamics of Cancer: A Very Short Introduction Through Two Case Studies (Q5016714) (← links)
- Bifurcation of a Mathematical Model for Tumor Growth with Angiogenesis and Gibbs–Thomson Relation (Q5016872) (← links)
- A numerical method based on the moving mesh for the solving of a mathematical model of the avascular tumor growth (Q5025449) (← links)
- On the avascular ellipsoidal tumour growth model within a nutritive environment (Q5056695) (← links)
- Numerical algorithms for a free boundary problem model of DCIS and a related inverse problem (Q5109256) (← links)
- Another way of solving a free boundary problem related to DCIS model (Q5164916) (← links)
- Asymptotic stability of a free boundary problem for the growth of multi-layer tumours in the necrotic phase (Q5229275) (← links)
- A two-species hyperbolic–parabolic model of tissue growth (Q5239051) (← links)
- Bifurcation analysis of amathematical model for the growth of solid tumors in the presence of external inhibitors (Q5256779) (← links)
- A hyperbolic free boundary problem modeling tumor growth: Asymptotic behavior (Q5313308) (← links)
- MATHEMATICAL ANALYSIS AND CHALLENGES ARISING FROM MODELS OF TUMOR GROWTH (Q5386713) (← links)
- Analysis of a mathematical model of the growth of necrotic tumors (Q5934259) (← links)
- Simple ODE models of tumor growth and anti-angiogenic or radiation treatment (Q5950554) (← links)
- A free boundary problem for necrotic tumor growth with angiogenesis (Q6039007) (← links)
- Analysis of a radial free boundary tumor model with time-dependent absorption efficiency (Q6048930) (← links)
- Tumor boundary instability induced by nutrient consumption and supply (Q6097497) (← links)
- Analysis of a free boundary problem for vascularized tumor growth with a necrotic core and time delays (Q6100883) (← links)
- Phenotypic heterogeneity in a model of tumour growth: existence of solutions and incompressible limit (Q6116612) (← links)
- Biparametric identification for a free boundary of ductal carcinoma in situ (Q6171021) (← links)
- Formation and growth of co-culture tumour spheroids: new compartment-based mathematical models and experiments (Q6188380) (← links)
- Phenotype-structured model of intra-clonal heterogeneity and drug resistance in multiple myeloma (Q6192824) (← links)
- Analysis of the growth of a radial tumor with triple-layered structure (Q6493896) (← links)
- Periodic solution for a free-boundary tumor model with small diffusion-to-growth ratio (Q6499946) (← links)
- Tumor growth with a necrotic core as an obstacle problem in pressure (Q6564753) (← links)
- Global existence of solutions for a free-boundary tumor model with angiogenesis and a necrotic core (Q6574539) (← links)