Semiflexible polymers such as filamentous actin (F-actin) play a vital role in the mechanical behavior of cells, yet the basic properties of cross-linked F-actin networks remain poorly understood. To address this issue, we have performed numerical studies of the linear response of homogeneous and isotropic two-dimensional networks subject to an applied strain at zero temperature. The elastic moduli are found to vanish for network densities at a rigidity percolation threshold. For higher densities, two regimes are observed: one in which the deformation is predominately affine and the filaments stretch and compress; and a second in which bending modes dominate. We identify a dimensionless scalar quantity, being a combination of the material l...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
Disordered filamentous networks with compliant crosslinks exhibit a low linear elastic shear modulus...
We image semiflexible polymer networks under shear at the micrometer scale. By tracking embedded pro...
Actin filaments assemble into network-like structures and play an important role in various cellular...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
We explore theoretically the zero frequency shear modulus of a polymer network constructed from semi...
Experiments have shown that elasticity of disordered filamentous networks with compliant crosslinks ...
Strain stiffening of protein networks is explored by means of a finite strain analysis of a two-dime...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
The macroscopic mechanical response of F-actin networks was explained quantitatively in terms of sin...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
This dissertation investigates the mechanics of semiflexible filament network and the effects of pol...
Strain stiffening of filamentous protein networks is explored by means of a finite strain analysis o...
Recent experiments have demonstrated that the nonlinear elasticity of in vitro networks of the biopo...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
Disordered filamentous networks with compliant crosslinks exhibit a low linear elastic shear modulus...
We image semiflexible polymer networks under shear at the micrometer scale. By tracking embedded pro...
Actin filaments assemble into network-like structures and play an important role in various cellular...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
We explore theoretically the zero frequency shear modulus of a polymer network constructed from semi...
Experiments have shown that elasticity of disordered filamentous networks with compliant crosslinks ...
Strain stiffening of protein networks is explored by means of a finite strain analysis of a two-dime...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
The macroscopic mechanical response of F-actin networks was explained quantitatively in terms of sin...
Actin filament networks enable the cytoskeleton to adjust to internal and external forcing. These dy...
This dissertation investigates the mechanics of semiflexible filament network and the effects of pol...
Strain stiffening of filamentous protein networks is explored by means of a finite strain analysis o...
Recent experiments have demonstrated that the nonlinear elasticity of in vitro networks of the biopo...
It is well-known that the mechanical response of live cells is largely determined by the cytoskeleto...
Disordered filamentous networks with compliant crosslinks exhibit a low linear elastic shear modulus...
We image semiflexible polymer networks under shear at the micrometer scale. By tracking embedded pro...