Multiscale modeling is emerging as one of the key challenges in mathematical biology. However, the recent rapid increase in the number of modeling methodologies being used to describe cell populations has raised a number of interesting questions. For example, at the cellular scale, how can the appropriate discrete cell-level model be identified in a given context? Additionally, how can the many phenomenological assumptions used in the derivation of models at the continuum scale be related to individual cell behavior? In order to begin to address such questions, we consider a discrete one-dimensional cell-based model in which cells are assumed to interact via linear springs. From the discrete equations of motion, the continuous Rouse [P. E. ...
Existing comparative studies between individual-based models of growing cell populations and their c...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Cell motility, and in particular crawling, is a complex process, with many as yet unknown details (\...
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...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
Multiscale mathematical modelling is one of the major driving forces behind the systems biology revo...
Continuum models for the spatial dynamics of growing cell populations have been widely used to inves...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
In this paper we compare two alternative theoretical approaches for simulating the growth of cell ag...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Invasion waves of cells play an important role in development, disease and repair. Standard discrete...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Existing comparative studies between individual-based models of growing cell populations and their c...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Cell motility, and in particular crawling, is a complex process, with many as yet unknown details (\...
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...
Although discrete cell-based frameworks are now commonly used to simulate a whole range of biologica...
Multiscale mathematical modelling is one of the major driving forces behind the systems biology revo...
Continuum models for the spatial dynamics of growing cell populations have been widely used to inves...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
In this paper we compare two alternative theoretical approaches for simulating the growth of cell ag...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Invasion waves of cells play an important role in development, disease and repair. Standard discrete...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Existing comparative studies between individual-based models of growing cell populations and their c...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
Cell motility, and in particular crawling, is a complex process, with many as yet unknown details (\...