Variance-Reduced Simulation of Multiscale Tumor Growth Modeling
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Publication:5737756
DOI10.1137/15M1043224zbMath1362.92032OpenAlexW2591596936MaRDI QIDQ5737756
Bert Mortier, Giovanni Samaey, Annelies Lejon
Publication date: 30 May 2017
Published in: Multiscale Modeling & Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1137/15m1043224
Applications of statistics to biology and medical sciences; meta analysis (62P10) Medical applications (general) (92C50) Computational methods for problems pertaining to biology (92-08)
Uses Software
Cites Work
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- Invasion and extinction in the mean field approximation for a spatial host-pathogen model
- Quantifying glioma cell growth and invasion in vitro
- A user's guide to PDE models for chemotaxis
- A new mathematical model for avascular tumour growth
- Coupled modelling of tumour angiogenesis, tumour growth and blood perfusion
- Mathematical modeling of monoclonal conversion in the colonic crypt
- Patient-calibrated agent-based modelling of ductal carcinoma in situ (DCIS): from microscopic measurements to macroscopic predictions of clinical progression
- Multiphase modelling of vascular tumour growth in two spatial dimensions
- Three-dimensional multispecies nonlinear tumor growth. I: Model and numerical method
- Mathematical modeling of tumor-induced angiogenesis
- An agent-based model for elasto-plastic mechanical interactions between cells, basement membrane and extracellular matrix
- Angiogenesis and vascular remodelling in normal and cancerous tissues
- Mesoscopic and continuum modelling of angiogenesis
- Monte Carlo and quasi-Monte Carlo sampling
- 'Go or Grow': the key to the emergence of invasion in tumour progression?
- Multiscale Developments of the Cellular Potts Model
- Mathematical Models of Avascular Tumor Growth
- Hybrid Multiscale Methods II. Kinetic Equations
- From Individual to Collective Behavior in Bacterial Chemotaxis
- Exploring complex networks
- SIMULATING INDIVIDUAL-BASED MODELS OF BACTERIAL CHEMOTAXIS WITH ASYMPTOTIC VARIANCE REDUCTION
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