Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton under a variety of cell activities. This study numerically validates the rheological property of F-actin cytoskeleton is not only a result of kinetic energy dissipation of F-actin, but also greatly depends on the configuration remodeling of networks structure. Both filament geometry and crosslinker properties can affect the remodeling of F-actin cytoskeleton. The crosslinker unbinding is found to dissipate energy and induce prominent stress relaxation in the F-actin adjacent to cross-linkages. Coupled with F-actin elasticity, the energy dissipation and stress relaxation are more significant in bundled F-actin networks than in single F-actin netw...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struc...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
The actin cytoskeleton, a network of protein-polymers, is responsible for the mechanical stability o...
Actin filaments (F-actin) that locate just beneath the cell plasma membrane could be crosslinked int...
A model of crosslinker unbinding is implemented in a highly coarsegrained granular model of F-actin ...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
A model of crosslinker unbinding is implemented in a highly coarse-grained granular model of F-actin...
Diverse mechanics of the F-actin cytoskeleton mediate essential behaviors of cells, including cell d...
AbstractWe develop a computational model to compare the relative importance of unbinding and unfoldi...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
Networks of filamentous actin (F-actin) are important for the mechanics of most animal cells. These ...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struc...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
The actin cytoskeleton, a network of protein-polymers, is responsible for the mechanical stability o...
Actin filaments (F-actin) that locate just beneath the cell plasma membrane could be crosslinked int...
A model of crosslinker unbinding is implemented in a highly coarsegrained granular model of F-actin ...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
A model of crosslinker unbinding is implemented in a highly coarse-grained granular model of F-actin...
Diverse mechanics of the F-actin cytoskeleton mediate essential behaviors of cells, including cell d...
AbstractWe develop a computational model to compare the relative importance of unbinding and unfoldi...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
Networks of filamentous actin (F-actin) are important for the mechanics of most animal cells. These ...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struc...