<p>(A) Schematic stress-strain curve to illustrate toe, linear, plastic, and failure region. A collagen fiber network is soft at the small deformation state, but stiff at the large deformation state because realigning fibers through crosslinkers play a pivotal role in the strain stiffening. Realignment illustration of fiber network model for shear test (A1: zero strain, A2: small strain, A3: medium strain) and tensile test (A4: zero strain, A5: small strain, A6: medium strain). Black solid lines represent collagen fibers and red solid lines are crosslinkers. Black dots represent beads which can have elastic connection with other beads. Light blue solid arrows represent force vectors, and a light blue dot represents anchored fixed beads for ...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...
<p>We simulated 8 different crosslinker densities (2, 4, …, 16N, 2N increment), 16 different crossli...
<p>(A) The simulation box is 200 µm (length) ×200 µm (width) ×300 µm (height). The bottom 50 µm and ...
We study the micromechanics of collagen-I gel with the goal of bridging the gap between theory and e...
Extracellular matrix (ECM) strongly influences cellular behaviors, including cell proliferation, adh...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
We study the micromechanics of collagen-I gel with the goal of bridging the gap between theory and e...
AbstractCollagen, a molecule consisting of three braided protein helices, is the primary building bl...
Collagen forms fibrous networks that reinforce tissues and provide an extracellular matrix for cells...
Extracellular matrix (ECM) strongly influences cellular behaviors, including cell proliferation, adh...
<div><p>Disordered fiber networks provide structural support to a wide range of important materials,...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...
<p>We simulated 8 different crosslinker densities (2, 4, …, 16N, 2N increment), 16 different crossli...
<p>(A) The simulation box is 200 µm (length) ×200 µm (width) ×300 µm (height). The bottom 50 µm and ...
We study the micromechanics of collagen-I gel with the goal of bridging the gap between theory and e...
Extracellular matrix (ECM) strongly influences cellular behaviors, including cell proliferation, adh...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Disordered fiber networks provide structural support to a wide range of important materials, and the...
Collagen is the main structural and load-bearing element of various connective tissues, where it for...
We study the micromechanics of collagen-I gel with the goal of bridging the gap between theory and e...
AbstractCollagen, a molecule consisting of three braided protein helices, is the primary building bl...
Collagen forms fibrous networks that reinforce tissues and provide an extracellular matrix for cells...
Extracellular matrix (ECM) strongly influences cellular behaviors, including cell proliferation, adh...
<div><p>Disordered fiber networks provide structural support to a wide range of important materials,...
Collagen networks, the main structural/mechanical elements in biological tissues, increasingly serve...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...
The mechanical properties of type I collagen gel vary due to different polymerization parameters. In...