We image semiflexible polymer networks under shear at the micrometer scale. By tracking embedded probe particles, we determine the local strain field, and directly measure its uniformity, or degree of affineness, on scales of 2-100μm. The degree of nonaffine strain depends upon the polymer length and cross-link density, consistent with theoretical predictions. We also find a direct correspondence between the uniformity of the microscale strain and the nonlinear elasticity of the networks in the bulk. © 2007 The American Physical Society
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
Biological and polymeric networks show highly nonlinear stress-strain behavior manifested in materia...
We explore theoretically the zero frequency shear modulus of a polymer network constructed from semi...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Semiflexible polymers such as filamentous actin (F-actin) play a vital role in the mechanical behavi...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
The cytoskeleton of eukaryotic cells provides mechanical support and governs intracellular transport...
Polymer-network gels often exhibit local defects and spatial heterogeneity of their cross-linking de...
The microstructural basis of the characteristic nonlinear mechanics of biopolymernetworks remains un...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
This thesis investigates two soft-matter systems, viz., bio-polymer gels and colloidal dispersions u...
Abstract: Strain-stiffening behavior common to biopolymer networks is difficult to reproduce in syn...
Random networks of semiflexible filaments are common support structures in biology. Familiar example...
We develop an effective medium approach to the mechanics of disordered, semiflexible polymer network...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
Biological and polymeric networks show highly nonlinear stress-strain behavior manifested in materia...
We explore theoretically the zero frequency shear modulus of a polymer network constructed from semi...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
Semiflexible polymers such as filamentous actin (F-actin) play a vital role in the mechanical behavi...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
The cytoskeleton of eukaryotic cells provides mechanical support and governs intracellular transport...
Polymer-network gels often exhibit local defects and spatial heterogeneity of their cross-linking de...
The microstructural basis of the characteristic nonlinear mechanics of biopolymernetworks remains un...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
This thesis investigates two soft-matter systems, viz., bio-polymer gels and colloidal dispersions u...
Abstract: Strain-stiffening behavior common to biopolymer networks is difficult to reproduce in syn...
Random networks of semiflexible filaments are common support structures in biology. Familiar example...
We develop an effective medium approach to the mechanics of disordered, semiflexible polymer network...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
Biological and polymeric networks show highly nonlinear stress-strain behavior manifested in materia...