This work examines a 1D individual-based model (IBM) for a system of tightly adherent cells, such as an epithelial monolayer. Each cell occupies a bounded region, defined by the location of its endpoints, has both elastic and viscous mechanical properties and is subject to drag generated by adhesion to the substrate. Differential-algebraic equations governing the evolution of the system are obtained from energy considerations. This IBM is then approximated by continuum models (systems of partial differential equations) in the limit of a large number of cells, N, when the cell parameters vary slowly in space or are spatially periodic (and so may be heterogeneous, with substantial variation between adjacent cells). For spatially periodic cell...
Key regulators in tissue-engineering processes such as cell culture and cellular organisation are th...
A model for cell-cell adhesion, based on an equation originally proposed by Armstrong et al. [A cont...
The mechanical response of single cells and tissues exhibits a broad distribution of time scales tha...
This work examines a 1D individual-based model (IBM) for a system of tightly adherent cells, such as...
In this work we analyse a one-dimensional, cell-based model of an epithelial sheet. In the model, ce...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
AbstractWe present a mechanistic hybrid continuum-discrete model to simulate the dynamics of epithel...
In this paper we compare two alternative theoretical approaches for simulating the growth of cell ag...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
Constitutive models for soft tissue mechanics are typically constructed by fitting phenomenological ...
Key factors in the formation of cell aggregates in tissue engineering and other fields are the cell-...
Key factors in the formation of cell aggregates in tissue engineering and other fields are the cell-...
We use a two-dimensional cellular Potts model to represent the behavior of an epithelial cell layer ...
This dissertation investigates the physical mechanics of collective cell migration in monolayers of ...
We consider a continuum mathematical model of biological tissue formation inspired by recent experim...
Key regulators in tissue-engineering processes such as cell culture and cellular organisation are th...
A model for cell-cell adhesion, based on an equation originally proposed by Armstrong et al. [A cont...
The mechanical response of single cells and tissues exhibits a broad distribution of time scales tha...
This work examines a 1D individual-based model (IBM) for a system of tightly adherent cells, such as...
In this work we analyse a one-dimensional, cell-based model of an epithelial sheet. In the model, ce...
Within cells, the cytoskeleton organizes into polymer networks with unique properties. At short time...
AbstractWe present a mechanistic hybrid continuum-discrete model to simulate the dynamics of epithel...
In this paper we compare two alternative theoretical approaches for simulating the growth of cell ag...
Understanding the biomechanical properties and the effect of biomechanical force on epithelial cells...
Constitutive models for soft tissue mechanics are typically constructed by fitting phenomenological ...
Key factors in the formation of cell aggregates in tissue engineering and other fields are the cell-...
Key factors in the formation of cell aggregates in tissue engineering and other fields are the cell-...
We use a two-dimensional cellular Potts model to represent the behavior of an epithelial cell layer ...
This dissertation investigates the physical mechanics of collective cell migration in monolayers of ...
We consider a continuum mathematical model of biological tissue formation inspired by recent experim...
Key regulators in tissue-engineering processes such as cell culture and cellular organisation are th...
A model for cell-cell adhesion, based on an equation originally proposed by Armstrong et al. [A cont...
The mechanical response of single cells and tissues exhibits a broad distribution of time scales tha...