AbstractIn this paper, we develop mathematical models for collective cell motility. Initially we develop a model using a linear diffusion–advection type equation and fit the parameters to data from cell motility assays. This approach is helpful in classifying the results of certain cell motility assay experiments. In particular, this model can determine degrees of directed versus undirected collective cell motility. Next we develop a model using a nonlinear diffusion term that is able to capture in a unified way directed and undirected collective cell motility. One goal of this work is to demonstrate that the forms of collective cell motility seen in the scratch assays and possibly other systems of interest need not reference external and m...
The migration of single cells is the best-studied mechanism of cell movement in vitro and is known t...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
AbstractIn this paper, we develop mathematical models for collective cell motility. Initially we dev...
In this paper we develop mathematical models for collective cell motility. Initially we develop a mo...
Collective cell movement is a key component of many important biological processes, including wound ...
Numerous biological processes, many impacting on human health, rely on collective cell movement. We...
AbstractThe classical approach to model collective biological cell movement is through coupled nonli...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Collective cell migration is ubiquitous in biology, from development to cancer; it is influenced by ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Swarming or collective motion of living entities is one of the most common and spectacular manifesta...
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 diffusion models are often used to represent the collective motion of cell populations. Mo...
The migration of single cells is the best-studied mechanism of cell movement in vitro and is known t...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...
AbstractIn this paper, we develop mathematical models for collective cell motility. Initially we dev...
In this paper we develop mathematical models for collective cell motility. Initially we develop a mo...
Collective cell movement is a key component of many important biological processes, including wound ...
Numerous biological processes, many impacting on human health, rely on collective cell movement. We...
AbstractThe classical approach to model collective biological cell movement is through coupled nonli...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Collective cell migration is ubiquitous in biology, from development to cancer; it is influenced by ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Swarming or collective motion of living entities is one of the most common and spectacular manifesta...
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 diffusion models are often used to represent the collective motion of cell populations. Mo...
The migration of single cells is the best-studied mechanism of cell movement in vitro and is known t...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Continuum diffusion models are often used to represent the collective motion of cell populations. Mo...