A novel cellular automaton (CA) for simulating biological membrane rupture is proposed. Constructed via simple rules governing deformation, tension, and fracture, the CA incorporates ideas from standard percolation models and bond-based fracture methods. The model is demonstrated by comparing simulations with experimental results of a double bilayer lipid membrane expanding on a solid substrate. Results indicate that the CA can capture non-trivial rupture morphologies such as floral patterns and the saltatory dynamics of fractal avalanches observed in experiments. Moreover, the CA provides insight into the poorly understood role of inter-layer adhesion, supporting the hypothesis that the density of adhesion sites governs rupture morphology
The chemobiomechanical signatures of diseased cells are often distinctively different from that of h...
A cellular-automaton based two-dimensional biofilm detachment module is developed. The module is an ...
This contains the source code and data set used for the paper "Membrane-MEDYAN: Simulating Deformabl...
A novel cellular automaton (CA) for simulating biological membrane rupture is proposed. Constructed ...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
Bilayer membranes envelope cells as well as organelles, and constitute the most ubiquitous biologica...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
<p>(a-c) Confocal micrographs of a floral rupture occurring in the distal bilayer of a DLBM. Yellow ...
<p>(a-c) Binary images showing the contour of the fractal ruptures in <a href="http://www.plosone.or...
AbstractA new simulation method, dissipative particle dynamics, is applied to model biological membr...
A framework is presented that captures the discrete and probabilistic nature of molecular transport ...
International audienceThis paper describes a new model of rupture designed to reproduce structural p...
A computer simulation is used to investigate hole formation in a model membrane. The model parameter...
Mechanical perturbations are ubiquitous in living cells, and many biological functions are dependent...
The chemobiomechanical signatures of diseased cells are often distinctively different from that of h...
A cellular-automaton based two-dimensional biofilm detachment module is developed. The module is an ...
This contains the source code and data set used for the paper "Membrane-MEDYAN: Simulating Deformabl...
A novel cellular automaton (CA) for simulating biological membrane rupture is proposed. Constructed ...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
Bilayer membranes envelope cells as well as organelles, and constitute the most ubiquitous biologica...
We simulate the formation of spontaneous ruptures in supported phospholipid double bilayer membranes...
<p>(a-c) Confocal micrographs of a floral rupture occurring in the distal bilayer of a DLBM. Yellow ...
<p>(a-c) Binary images showing the contour of the fractal ruptures in <a href="http://www.plosone.or...
AbstractA new simulation method, dissipative particle dynamics, is applied to model biological membr...
A framework is presented that captures the discrete and probabilistic nature of molecular transport ...
International audienceThis paper describes a new model of rupture designed to reproduce structural p...
A computer simulation is used to investigate hole formation in a model membrane. The model parameter...
Mechanical perturbations are ubiquitous in living cells, and many biological functions are dependent...
The chemobiomechanical signatures of diseased cells are often distinctively different from that of h...
A cellular-automaton based two-dimensional biofilm detachment module is developed. The module is an ...
This contains the source code and data set used for the paper "Membrane-MEDYAN: Simulating Deformabl...