Collagen is the main structural and load-bearing element of various connective tissues, where it forms the extracellular matrix that supports cells. It has long been known that collagenous tissues exhibit a highly nonlinear stress-strain relationship, although the origins of this nonlinearity remain unknown. Here, we show that the nonlinear stiffening of reconstituted type I collagen networks is controlled by the applied stress and that the network stiffness becomes surprisingly insensitive to network concentration. We demonstrate how a simple model for networks of elastic fibers can quantitatively account for the mechanics of reconstituted collagen networks. Our model points to the important role of normal stresses in determining the nonli...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Living tissues show an extraordinary adaptiveness to strain, which is crucial for their proper biolo...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Collagen forms fibrous networks that reinforce tissues and provide an extracellular matrix for cells...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Disordered fibrous networks are ubiquitous in nature as major structural components of living cells ...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Living tissues show an extraordinary adaptiveness to strain, which is crucial for their proper biolo...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Collagen forms fibrous networks that reinforce tissues and provide an extracellular matrix for cells...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
We show that the nonlinear mechanical response of networks formed from un-cross-linked fibrin or col...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
Disordered fibrous networks are ubiquitous in nature as major structural components of living cells ...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Living tissues show an extraordinary adaptiveness to strain, which is crucial for their proper biolo...
Disordered fiber networks provide structural support to a wide range of important materials, and the...