A model of crosslinker unbinding is implemented in a highly coarsegrained granular model of F-actin cytoskeleton. We employ this specific granular model to study the mechanisms of the compressive responses of F-actin networks. It is found that the compressive response of F-actin cytoskeleton has dependency on the strain rate. The evolution of deformation energy in the network indicates that crosslinker unbinding events can induce the remodelling of F-actin cytoskeleton in response to external loadings. The internal stress in F-actin cytoskeleton can efficiently dissipate with the help of crosslinker unbinding, which could lead to the spontaneous relaxation of living cells
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...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
A model of crosslinker unbinding is implemented in a highly coarse-grained granular model of F-actin...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
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...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
Two types of measurement are presented that relate molecular events to macroscopic behavior of F-act...
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...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
A model of crosslinker unbinding is implemented in a highly coarse-grained granular model of F-actin...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
Rheological property of F-actin cytoskeleton is significant to the restructuring of cytoskeleton und...
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...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
Two types of measurement are presented that relate molecular events to macroscopic behavior of F-act...
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...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...