Strain stiffening of filamentous protein networks is explored by means of a finite strain analysis of a two-dimensional network model of cross-linked semiflexible filaments. The results show that stiffening is caused by nonaffine network rearrangements that govern a transition from a bending-dominated response at small strains to a stretching-dominated response at large strains. Filament undulations, which are key in the existing explanation of stiffening, merely postpone the transition
Numerical simulations are reported for the response of three-dimensional cross-linked F-actin networ...
By combining the force-extension relation of single semiflexible polymers with a Langevin equation t...
AbstractNetworks of the cytoskeletal biopolymer actin cross-linked by the compliant protein filamin ...
Strain stiffening of filamentous protein networks is explored by means of a finite strain analysis o...
Strain stiffening of protein networks is explored by means of a finite strain analysis of a two-dime...
Biopolymer networks, such as those constituting the cytoskeleton of a cell or biological tissue, exh...
The microstructural basis of the characteristic nonlinear mechanics of biopolymernetworks remains un...
In a recent publication, we studied the mechanical stiffening behavior in two-dimensional (2D) cross...
Recent experiments have demonstrated that the nonlinear elasticity of in vitro networks of the biopo...
Numerical simulations are reported for the response of three-dimensional cross-linked F-actin networ...
By combining the force-extension relation of single semiflexible polymers with a Langevin equation t...
AbstractNetworks of the cytoskeletal biopolymer actin cross-linked by the compliant protein filamin ...
Strain stiffening of filamentous protein networks is explored by means of a finite strain analysis o...
Strain stiffening of protein networks is explored by means of a finite strain analysis of a two-dime...
Biopolymer networks, such as those constituting the cytoskeleton of a cell or biological tissue, exh...
The microstructural basis of the characteristic nonlinear mechanics of biopolymernetworks remains un...
In a recent publication, we studied the mechanical stiffening behavior in two-dimensional (2D) cross...
Recent experiments have demonstrated that the nonlinear elasticity of in vitro networks of the biopo...
Numerical simulations are reported for the response of three-dimensional cross-linked F-actin networ...
By combining the force-extension relation of single semiflexible polymers with a Langevin equation t...
AbstractNetworks of the cytoskeletal biopolymer actin cross-linked by the compliant protein filamin ...