Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reaction of molecules, within growing tissues. Mathematical models of these processes often involve reaction-diffusion equations on growing domains that have been primarily studied using approximate numerical solutions. Recently, we have shown how to obtain an exact solution to a single, uncoupled, linear reaction-diffusion equation on a growing domain, 0 < x < L(t), where L(t) is the domain length. The present work is an extension of our previous study, and we illustrate how to solve a system of coupled reaction-diffusion equations on a growing domain. This system of equations can be used to study the spatial and temporal distributions of differen...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
We consider the motion of a diffusive population on a growing domain, 0 < x < L(t ), which is motiva...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
<div><p>Embryonic development involves diffusion and proliferation of cells, as well as diffusion an...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Many processes during embryonic development involve transport and reaction of molecules, or transpor...
Many processes during embryonic development involve transport and reaction of molecules, or transpor...
Many processes during embryonic development involve transport and reaction of mole-cules, or transpo...
The application of mathematics to fields such as biology, medicine, and biotechnology has resulted i...
We construct a model for cell proliferation with differentiation into different cell types, allowing...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
We consider the motion of a diffusive population on a growing domain, 0 < x < L(t ), which is motiva...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
<div><p>Embryonic development involves diffusion and proliferation of cells, as well as diffusion an...
Embryonic development involves diffusion and proliferation of cells, as well as diffusion and reacti...
Many processes during embryonic development involve transport and reaction of molecules, or transpor...
Many processes during embryonic development involve transport and reaction of molecules, or transpor...
Many processes during embryonic development involve transport and reaction of mole-cules, or transpo...
The application of mathematics to fields such as biology, medicine, and biotechnology has resulted i...
We construct a model for cell proliferation with differentiation into different cell types, allowing...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
Unlike standard applications of transport theory, the transport of molecules and cells during embryo...
We consider the motion of a diffusive population on a growing domain, 0 < x < L(t ), which is motiva...