Although discrete cell-based frameworks are now commonly used to simulate a whole range of biological phenomena, it is typically not obvious how the numerous different types of model are related to one another, nor which one is most appropriate in a given context. Here we demonstrate how individual cell movement on the discrete scale modeled using nonlinear force laws can be described by nonlinear diffusion coefficients on the continuum scale. A general relationship between nonlinear force laws and their respective diffusion coefficients is derived in one spatial dimension and, subsequently, a range of particular examples is considered. For each case excellent agreement is observed between numerical solutions of the discrete and correspondi...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
though discrete cell-based frameworks are now commonly used to simulate a whole range of biological ...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...
Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the r...
Exclusion processes on a regular lattice are used to model many biological and physical systems at a...