Stochastic Multiscale Models of Cell Population Dynamics: Asymptotic and Numerical Methods
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Publication:5247599
DOI10.1051/MMNP/201510104zbMath1325.92058OpenAlexW1964369622WikidataQ61904385 ScholiaQ61904385MaRDI QIDQ5247599
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Publication date: 24 April 2015
Published in: Mathematical Modelling of Natural Phenomena (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/2072/377772
Population dynamics (general) (92D25) Cell biology (92C37) Physiological, cellular and medical topics (92C99)
Related Items (4)
Stochastic multi-scale models of competition within heterogeneous cellular populations: simulation methods and mean-field analysis ⋮ Coarse-graining and hybrid methods for efficient simulation of stochastic multi-scale models of tumour growth ⋮ From invasion to latency: intracellular noise and cell motility as key controls of the competition between resource-limited cellular populations ⋮ Hybrid Modelling in Cell Biology
Cites Work
- Unnamed Item
- Mathematical modelling of flow through vascular networks: implications for tumour-induced angiogenesis and chemotherapy strategies
- A hybrid model of tumor-stromal interactions in breast cancer
- Mathematical modelling of flow in 2D and 3D vascular networks: Applications to anti-angio\-genic and chemotherapeutic drug strategies
- Stochastic methods. A handbook for the natural and social sciences
- Asymptotic analysis of multiscale approximations to reaction networks
- Continuous and discrete mathematical models of tumor-induced angiogenesis
- A scaling theory of bifurcations in the symmetric weak-noise escape problem.
- The role of cell-cell interactions in a two-phase model for avascular tumour growth
- A structural model of the VEGF signalling pathway: emergence of robustness and redundancy properties
- Angiogenesis and vascular remodelling in normal and cancerous tissues
- Multiscale modelling and nonlinear simulation of vascular tumour growth
- A mathematical model of HiF-\(1{\alpha}\)-mediated response to hypoxia on the G1/S transition
- A Guide to First-Passage Processes
- A hybrid approach to multi-scale modelling of cancer
- Cancer Modeling: A Personal Perspective
- Multiphase and Multiscale Trends in Cancer Modelling
- A Multiple Scale Model for Tumor Growth
- Multiscale computational modelling of the heart
- Nonlinear modelling of cancer: bridging the gap between cells and tumours
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