International audienceBecause of their tunable mechanical properties, polyacrylamide gels (PAG) are frequently used for studying cell adhesion and migratory responses to extracellular substrate stiffness. Since these responses are known to heavily depend on the tensional balance between cell contractility and substrate mechanical resistance, a precise knowledge of PAG's mechanical properties becomes quite crucial. Using the micropipette aspiration technique, we first exhibited the nonlinear elastic behavior of PAG and then successfully modeled it by an original strain-energy function. This function depends on the Poisson's ratio and on two material parameters, which have been explicitly related to acrylamide and bis-acrylamide concentration...
85 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.This work describes the use of...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...
While performing several functions, adherent cells deform their surrounding substrate via stable adh...
International audienceBecause of their tunable mechanical properties, polyacrylamide gels (PAG) are ...
International audienceSubstrates with tunable mechanical properties are crucial for the study of cel...
International audienceSubstrates with tunable mechanical properties are crucial for the study of cel...
International audienceFollowing the general aim of recapitulating the native mechanical properties o...
Nonlinear elastic properties of polyacrylamide gels: Implications for quantification of cellular for...
AbstractCells sense the rigidity of their substrate; however, little is known about the physical var...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Besides biological and chemical cues, cellular behavior has been found to be affected by mechanical ...
Mechanical properties of materials strongly influence cell fate and functions. Focal adhesions are i...
85 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.This work describes the use of...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...
While performing several functions, adherent cells deform their surrounding substrate via stable adh...
International audienceBecause of their tunable mechanical properties, polyacrylamide gels (PAG) are ...
International audienceSubstrates with tunable mechanical properties are crucial for the study of cel...
International audienceSubstrates with tunable mechanical properties are crucial for the study of cel...
International audienceFollowing the general aim of recapitulating the native mechanical properties o...
Nonlinear elastic properties of polyacrylamide gels: Implications for quantification of cellular for...
AbstractCells sense the rigidity of their substrate; however, little is known about the physical var...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Besides biological and chemical cues, cellular behavior has been found to be affected by mechanical ...
Mechanical properties of materials strongly influence cell fate and functions. Focal adhesions are i...
85 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.This work describes the use of...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...
While performing several functions, adherent cells deform their surrounding substrate via stable adh...