This paper presents a robust, efficient and accurate finite element method for solving reaction-diffusion systems on stationary spheroidal surfaces (these are surfaces which are deformations of the sphere such as ellipsoids, dumbbells, and heart-shaped surfaces) with potential applications in the areas of developmental biology, cancer research, wound healing, tissue regeneration, and cell motility among many others where such models are routinely used. Our method is inspired by the radially projected finite element method introduced by Meir and Tuncer (2009), hence the name ``projected'' finite element method. The advantages of the projected finite element method are that it is easy to implement and that it provides a conforming finite...
AbstractIn this work we present the bulk-surface finite element method (BSFEM) for solving coupled s...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...
The focus of this article is to present the projected finite element method for solving systems of r...
In this article we propose models and a numerical method for pattern formation on evolving curved su...
In this article we propose models and a numerical method for patternformation on evolving curved sur...
Patterns emerge in various growing biological organisms, like conifer embryos, often from an homogen...
Reaction-diffusion processes on complex deforming surfaces are fundamental to a number of biological...
Patterns emerge in various growing biological organisms, like conifer embryos, often from an homogen...
Reaction-diffusion systems have been widely studied in developmental biology, chemistry and more rec...
Many problems in biology involve growth. In numerical simulations it can therefore be very convenien...
In this work we present the bulk-surface finite element method (BSFEM) for solving coupled systems o...
In this paper we examine spatio-temporal pattern formation in reaction-diffusion systems on the surf...
In this paper we examine spatio-temporal pattern formation in reaction-diffusion systems on the surf...
This paper describes a biologically motivated method of texture synthesis called reacriorr-dlfusion ...
AbstractIn this work we present the bulk-surface finite element method (BSFEM) for solving coupled s...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...
The focus of this article is to present the projected finite element method for solving systems of r...
In this article we propose models and a numerical method for pattern formation on evolving curved su...
In this article we propose models and a numerical method for patternformation on evolving curved sur...
Patterns emerge in various growing biological organisms, like conifer embryos, often from an homogen...
Reaction-diffusion processes on complex deforming surfaces are fundamental to a number of biological...
Patterns emerge in various growing biological organisms, like conifer embryos, often from an homogen...
Reaction-diffusion systems have been widely studied in developmental biology, chemistry and more rec...
Many problems in biology involve growth. In numerical simulations it can therefore be very convenien...
In this work we present the bulk-surface finite element method (BSFEM) for solving coupled systems o...
In this paper we examine spatio-temporal pattern formation in reaction-diffusion systems on the surf...
In this paper we examine spatio-temporal pattern formation in reaction-diffusion systems on the surf...
This paper describes a biologically motivated method of texture synthesis called reacriorr-dlfusion ...
AbstractIn this work we present the bulk-surface finite element method (BSFEM) for solving coupled s...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...
We present a new high-order, local meshfree method for numerically solving reaction diffusion equati...