We introduce a new finite difference scheme to study the dynamics of Turing patterns of a two-species activator-inhibitor system embedded on a phase-separating curved membrane, modelling for instance a lipid bilayer. We show that the underlying binary fluid can strongly affect both the dynamical and the steady state properties of the ensuing Turing patterns. Furthermore, geometry plays a key role, as a large enough local membrane curvature can both arrest the coarsening of the lipid domains and position the patterns selectively at areas of high or small local curvature. The physical phenomena we observe are due to a minimal coupling, between the diffusivity of the Turing components and the local membrane composition. While our study is theo...
Local curvature is a key driving force for spatial organization of cellular membranes, via a phenome...
For many years Turing systems have been proposed to account for spatial and spatiotemporal pattern f...
In this thesis, we investigate interactions between conical inclusions in a lipid bilayer membrane a...
We introduce a new finite difference scheme to study the dynamics of Turing patterns of a two-specie...
We study by computer simulations the physics of domain formation on surfaces, as a model for pattern...
Combining different theoretical approaches, curvature modulated sorting in lipid bilayers fixed on n...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Phase segregation of membranal components, such as proteins, lipids, and cholesterols, leads to the ...
Biological membranes are important structural units in the cell. Composed of a lipid bilayer with em...
The function of biological membranes is controlled by the interaction of the fluid lipid bilayer wit...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
We investigate the dynamics of scalar and vector fields on closed surfaces through the use of numeri...
For many years Turing systems have been proposed to account for spatial and spatiotemporal pattern f...
Membrane curvature controls the spatial organization and activity of cells. Lipid sorting in cell me...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
Local curvature is a key driving force for spatial organization of cellular membranes, via a phenome...
For many years Turing systems have been proposed to account for spatial and spatiotemporal pattern f...
In this thesis, we investigate interactions between conical inclusions in a lipid bilayer membrane a...
We introduce a new finite difference scheme to study the dynamics of Turing patterns of a two-specie...
We study by computer simulations the physics of domain formation on surfaces, as a model for pattern...
Combining different theoretical approaches, curvature modulated sorting in lipid bilayers fixed on n...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Phase segregation of membranal components, such as proteins, lipids, and cholesterols, leads to the ...
Biological membranes are important structural units in the cell. Composed of a lipid bilayer with em...
The function of biological membranes is controlled by the interaction of the fluid lipid bilayer wit...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
We investigate the dynamics of scalar and vector fields on closed surfaces through the use of numeri...
For many years Turing systems have been proposed to account for spatial and spatiotemporal pattern f...
Membrane curvature controls the spatial organization and activity of cells. Lipid sorting in cell me...
Phase and shape heterogeneities in biomembranes are of functional importance. However, it is difficu...
Local curvature is a key driving force for spatial organization of cellular membranes, via a phenome...
For many years Turing systems have been proposed to account for spatial and spatiotemporal pattern f...
In this thesis, we investigate interactions between conical inclusions in a lipid bilayer membrane a...