Pages that link to "Item:Q1921076"
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The following pages link to Avascular growth, angiogenesis and vascular growth in solid tumours: The mathematical modelling of the stages of tumour development (Q1921076):
Displaying 33 items.
- Mesoscopic and continuum modelling of angiogenesis (Q2512944) (← links)
- Loss- and gain-of-function mutations in cancer: mass-action, spatial and hierarchical models (Q2641406) (← links)
- A phenotype-structured model to reproduce the avascular growth of a tumor and its interaction with the surrounding environment (Q2670133) (← links)
- A positive splitting method for mixed hyperbolic-parabolic systems (Q2712972) (← links)
- Biomechanical and Nutrient Controls in the Growth of Mammalian Cell Populations (Q2786220) (← links)
- Entropy structure of a cross-diffusion tumor-growth model (Q2896915) (← links)
- A hybrid ten-species phase-field model of tumor growth (Q2930094) (← links)
- Stability of traveling waves of the Keller–Segel system with logarithmic sensitivity (Q2932523) (← links)
- Incompressible limit of a mechanical model of tumour growth with viscosity (Q2955799) (← links)
- Modelling the spatiotemporal dynamics of chemovirotherapy cancer treatment (Q3300890) (← links)
- A MODEL AT THE MACROSCOPIC SCALE OF PROSTATE TUMOR GROWTH UNDER INTERMITTENT ANDROGEN SUPPRESSION (Q3400124) (← links)
- ON THE FOUNDATIONS OF CANCER MODELLING: SELECTED TOPICS, SPECULATIONS, AND PERSPECTIVES (Q3521624) (← links)
- GENERAL DIFFUSE-INTERFACE THEORIES AND AN APPROACH TO PREDICTIVE TUMOR GROWTH MODELING (Q3560029) (← links)
- CELLULAR AUTOMATON MODELS OF TUMOR DEVELOPMENT: A CRITICAL REVIEW (Q4425302) (← links)
- Tractable Model of Malignant Gliomas Immunotherapy with Discrete Time Delays (Q4628548) (← links)
- MATHEMATICAL TOPICS ON THE MODELLING COMPLEX MULTICELLULAR SYSTEMS AND TUMOR IMMUNE CELLS COMPETITION (Q4659522) (← links)
- A COMPARISON OF THE ROLES OF LOCALISED AND NONLOCALISED GROWTH FACTORS IN SOLID TUMOUR GROWTH (Q4933722) (← links)
- Existence of weak solutions to multiphase Cahn–Hilliard–Darcy and Cahn–Hilliard–Brinkman models for stratified tumor growth with chemotaxis and general source terms (Q5037294) (← links)
- Contraction for large perturbations of traveling waves in a hyperbolic–parabolic system arising from a chemotaxis model (Q5112028) (← links)
- Optimal control theory and advanced optimality conditions for a diffuse interface model of tumor growth (Q5126414) (← links)
- On a Cahn--Hilliard--Brinkman Model for Tumor Growth and Its Singular Limits (Q5231297) (← links)
- STOCHASTIC MODELING OF LOSS- AND GAIN-OF-FUNCTION MUTATIONS IN CANCER (Q5386708) (← links)
- Positive Solutions of a System Arising from Angiogenesis (Q5503507) (← links)
- Boundedness of solutions of a non-local reaction–diffusion model for adhesion in cell aggregation and cancer invasion (Q5504177) (← links)
- COARSE GRAINING IN SIMULATED CELL POPULATIONS (Q5716178) (← links)
- Group classification and solutions of a mathematical model from tumour biology (Q5862909) (← links)
- A gradient-driven mathematical model of antiangiogenesis (Q5927950) (← links)
- Tumor boundary instability induced by nutrient consumption and supply (Q6097497) (← links)
- Evaluation of entropy and fractal dimension as biomarkers for tumor growth and treatment response using cellular automata (Q6174190) (← links)
- A mathematical model for nutrient-limited uniaxial growth of a compressible tissue (Q6192793) (← links)
- Simulation of the cancer cell growth and their invasion into healthy tissues using local radial basis function method (Q6545906) (← links)
- Selected aspects of avascular tumor growth reproduced by a hybrid model of cell dynamics and chemical kinetics (Q6550777) (← links)
- Mathematical analysis of the spatiotemporal concentration of growth inhibitory factor in multicellular spheroids tumour (Q6657914) (← links)