Travelling wave phenomena are observed in many biological applications. Mathematical theory of standard reaction-diffusion problems shows that simple partial differential equations exhibit travelling wave solutions with constant wavespeed and such models are used to describe, for example, waves of chemical concentrations, electrical signals, cell migration, waves of epidemics and population dynamics. However, as in the study of cell motion in complex spatial geometries, experimental data are often not consistent with constant wavespeed. Non-local spatial models have successfully been used to model anomalous diffusion and spatial heterogeneity in different physical contexts. In this paper, we develop a fractional model based on the Fisher-Ko...
We analyse a novel mathematical model of malignant invasion which takes the form of a two-phase movi...
Abstract. This paper is concerned with a non-homogeneous in space and non-local in time random walk ...
A model of species migration is presented which takes the form of a reaction-diffusion system. We co...
Travelling wave phenomena are observed in many biological applications. Mathematical theory of stand...
This work addresses fundamental issues in the mathematical modelling of the diffusive motion of part...
In biological contexts, experimental evidence suggests that classical diffusion is not the best desc...
Cell invasion, characterised by moving fronts of cells, is an essential aspect of development, repai...
Lévy flights are a specific model of random walks that appear to be ubiquitous across a wide range o...
Biological invasion, whereby populations of motile and proliferative individuals lead to moving fron...
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 ...
The existence of landscape constraints in the home range of living organisms that adopt Lévy-flight ...
The movement of organisms and cells can be governed by occasional long distance runs, according to a...
A number of recent studies suggest that human and animal mobility patterns exhibit scale-free, Lévy-...
We analyse a novel mathematical model of malignant invasion which takes the form of a two-phase movi...
Abstract. This paper is concerned with a non-homogeneous in space and non-local in time random walk ...
A model of species migration is presented which takes the form of a reaction-diffusion system. We co...
Travelling wave phenomena are observed in many biological applications. Mathematical theory of stand...
This work addresses fundamental issues in the mathematical modelling of the diffusive motion of part...
In biological contexts, experimental evidence suggests that classical diffusion is not the best desc...
Cell invasion, characterised by moving fronts of cells, is an essential aspect of development, repai...
Lévy flights are a specific model of random walks that appear to be ubiquitous across a wide range o...
Biological invasion, whereby populations of motile and proliferative individuals lead to moving fron...
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 ...
The existence of landscape constraints in the home range of living organisms that adopt Lévy-flight ...
The movement of organisms and cells can be governed by occasional long distance runs, according to a...
A number of recent studies suggest that human and animal mobility patterns exhibit scale-free, Lévy-...
We analyse a novel mathematical model of malignant invasion which takes the form of a two-phase movi...
Abstract. This paper is concerned with a non-homogeneous in space and non-local in time random walk ...
A model of species migration is presented which takes the form of a reaction-diffusion system. We co...