In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The microscopic model constitutes a strongly coupled system of reaction-diffusionconvection equations for chemical processes in plant cells, the equations of poroelasticity for elastic deformations of plant cell walls and middle lamella, and Stokes equations for fluid flow inside the cells. The chemical process in cells and the elastic properties of cell walls and middle lamella are coupled because elastic moduli depend on densities involved in chemical reactions, whereas chemical reactions depend on mechanical stresses. Using homogenization techniques we derive rigorously macroscopic model for plant biomechanics. To pass to the limit in the non...
Mechanical factors play an important role in plant tissues growth and development. Plant growth is ...
The growth of plant organs is a complex process powered by osmosis that attracts water inside the ce...
International audienceA crucial question in developmental biology is how cell growth is coordinated ...
In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The...
In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The...
In this paper homogenization of a mathematical model for biomechanics of a plant tissue with randoml...
In this paper we present a derivation and multiscale analysis of a mathematical model for plant cell...
The microscopic structure of a plant cell wall is given by cellulose microfibrils embedded in a cell...
In this paper we present a derivation and multiscale analysis of a mathematical model for plant cell...
The study of plant growth has recently been revisited with the new possibility to investigate the dy...
In this study we propose a simple mathematical model based on the equilibrium equation for the mater...
At the cellular level, plant growth results from the competition between the so-called turgor pressu...
Mechanical factors play an important role in plant tissues growth and development. Plant growth is ...
The growth of plant organs is a complex process powered by osmosis that attracts water inside the ce...
International audienceA crucial question in developmental biology is how cell growth is coordinated ...
In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The...
In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The...
In this paper homogenization of a mathematical model for biomechanics of a plant tissue with randoml...
In this paper we present a derivation and multiscale analysis of a mathematical model for plant cell...
The microscopic structure of a plant cell wall is given by cellulose microfibrils embedded in a cell...
In this paper we present a derivation and multiscale analysis of a mathematical model for plant cell...
The study of plant growth has recently been revisited with the new possibility to investigate the dy...
In this study we propose a simple mathematical model based on the equilibrium equation for the mater...
At the cellular level, plant growth results from the competition between the so-called turgor pressu...
Mechanical factors play an important role in plant tissues growth and development. Plant growth is ...
The growth of plant organs is a complex process powered by osmosis that attracts water inside the ce...
International audienceA crucial question in developmental biology is how cell growth is coordinated ...