Moving fronts of cells are essential features of embryonic development, wound repair and cancer metastasis. This paper describes a set of experiments to investigate the roles of random motility and proliferation in driving the spread of an initially confined cell population. The experiments include an analysis of cell spreading when proliferation was inhibited. \ud \ud Our data have been analysed using two mathematical models: a lattice-based discrete model and a related continuum partial differential equation model. We obtain independent estimates of the random motility parameter, D, and the intrinsic proliferation rate, λ, and we confirm that these estimates lead to accurate modelling predictions of the position of the leading edge of the...
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 ...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
AbstractCells respond to various biochemical and physical cues during wound-healing and tumour progr...
The study of how cell populations grow and spread is integral to understanding and predicting the i...
Cell proliferation is often considered to occur via front propagation with constant velocity. This s...
Collective cell spreading is frequently observed in development, tissue repair and disease progressi...
Invasion waves of cells play an important role in development, disease and repair. Standard discrete...
Spreading cell fronts are essential features of development, repair and disease processes. Many math...
Spatial models of collective cell behaviour are often based on reaction-diffusion models that descri...
Spatial models of collective cell behaviour are often based on reaction-diffusion models that descri...
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 ...
Continuum, partial differential equation models are often used to describe the collective motion of ...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
AbstractCells respond to various biochemical and physical cues during wound-healing and tumour progr...
The study of how cell populations grow and spread is integral to understanding and predicting the i...
Cell proliferation is often considered to occur via front propagation with constant velocity. This s...
Collective cell spreading is frequently observed in development, tissue repair and disease progressi...
Invasion waves of cells play an important role in development, disease and repair. Standard discrete...
Spreading cell fronts are essential features of development, repair and disease processes. Many math...
Spatial models of collective cell behaviour are often based on reaction-diffusion models that descri...
Spatial models of collective cell behaviour are often based on reaction-diffusion models that descri...
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 ...
Continuum, partial differential equation models are often used to describe the collective motion of ...