When loaded in simple shear deformation, polymeric materials may develop so-called normal stresses: stresses perpendicular to the direction of the applied shear. These normal stresses are intrinsically nonlinear: basic symmetry considerations dictate they may only enter at O(¿ 2 ) , with ¿ the dimensionless shear strain. There is no fundamental restriction on their sign, and normal stresses may be positive (pushing outward) or negative (pulling inward). Most materials tend to dilate in the normal direction, but a wide variety of biopolymer networks including fibrin and actin gels have been reported to present anomalously large, negative normal stresses—a feature which has been ascribed to the intrinsic elastic nonlinearity of semiflexible f...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
When loaded in simple shear deformation, polymeric materials may develop so-called normal stresses: ...
Cross-linked biopolymer filament networks that constitute the cytoskeleton in living cells show rich...
Many biomaterials formed by cross-linked semiflexible or rigid filaments exhibit nonlinear rheology ...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
When subject to stress or external loads, most materials resist deformation. Any stable material, fo...
Motivated by recent experiments showing that a variety of stiff biopolymer gels exhibit highly unusu...
Biopolymer gels such as fibrin and collagen networks are known to develop tensile axial stress when ...
Biological and polymeric networks show highly nonlinear stress-strain behavior manifested in materia...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
We develop a continuum theory for equilibrium elasticity of a network of crosslinked semiflexible fi...
A hallmark of biopolymer networks is their sensitivity to stress, reflected by pronounced nonlinear ...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
When loaded in simple shear deformation, polymeric materials may develop so-called normal stresses: ...
Cross-linked biopolymer filament networks that constitute the cytoskeleton in living cells show rich...
Many biomaterials formed by cross-linked semiflexible or rigid filaments exhibit nonlinear rheology ...
International audienceCross-linked semiflexible polymer networks are omnipresent in living cells. Ty...
When subject to stress or external loads, most materials resist deformation. Any stable material, fo...
Motivated by recent experiments showing that a variety of stiff biopolymer gels exhibit highly unusu...
Biopolymer gels such as fibrin and collagen networks are known to develop tensile axial stress when ...
Biological and polymeric networks show highly nonlinear stress-strain behavior manifested in materia...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
We develop a continuum theory for equilibrium elasticity of a network of crosslinked semiflexible fi...
A hallmark of biopolymer networks is their sensitivity to stress, reflected by pronounced nonlinear ...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Naturally occurring biopolymers such as collagen and actin form branched fibrous networks. The avera...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...