<p>Fibers were simulated in two configurations, equal loading (A) and disparate loading (D), with either no domains initially unfolded (orange), 4 domains per molecule initially unfolded (purple) or 8 domains per molecule initially unfolded (black) for both the equally loaded fibers (B,C) and the disparate loaded fibers (E,F). Changes in the fiber Force (B, E) and Stress (C, F) were predominantly in the low strain region (<200% strain) where increasing the number of unfolded domains reduced the initial stiffness of the fiber.</p
International audienceMeasurements of normal stress differences are reported for suspensions of rigi...
Fibrous networks are ideal functional materials since they provide mechanical rigidity at low weight...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
<p>The tension of <i>in silico</i> fibers with 4 domains initially unfolded was scaled by the Fn con...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
Correlation of fibers’ anisotropy (a-f) and volume concentration (g-l) with axon's load share fracti...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
Computer simulations were used to study the effect of a single reinforcement fiber added to a mechan...
<p>(A) The simulation box is 200 µm (length) ×200 µm (width) ×300 µm (height). The bottom 50 µm and ...
<p>The experimental results from Klotzsch 2009 were scaled using the UV absorption measurements of F...
AbstractThe extracellular matrix contains components with remarkable mechanical properties, includin...
<p>The first time point imaged in each case was approximately two minutes after stretch, allowing su...
<p>[A] Number of fibres tested. [B] Cross-sectional area (CSA). [C] Maximal force production normali...
We present a model for stress-fiber reorganization and the associated contractility that includes bo...
Native and engineered fiber-reinforced tissues are composites comprised of stiff collagen fibers emb...
International audienceMeasurements of normal stress differences are reported for suspensions of rigi...
Fibrous networks are ideal functional materials since they provide mechanical rigidity at low weight...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
<p>The tension of <i>in silico</i> fibers with 4 domains initially unfolded was scaled by the Fn con...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
Correlation of fibers’ anisotropy (a-f) and volume concentration (g-l) with axon's load share fracti...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
Computer simulations were used to study the effect of a single reinforcement fiber added to a mechan...
<p>(A) The simulation box is 200 µm (length) ×200 µm (width) ×300 µm (height). The bottom 50 µm and ...
<p>The experimental results from Klotzsch 2009 were scaled using the UV absorption measurements of F...
AbstractThe extracellular matrix contains components with remarkable mechanical properties, includin...
<p>The first time point imaged in each case was approximately two minutes after stretch, allowing su...
<p>[A] Number of fibres tested. [B] Cross-sectional area (CSA). [C] Maximal force production normali...
We present a model for stress-fiber reorganization and the associated contractility that includes bo...
Native and engineered fiber-reinforced tissues are composites comprised of stiff collagen fibers emb...
International audienceMeasurements of normal stress differences are reported for suspensions of rigi...
Fibrous networks are ideal functional materials since they provide mechanical rigidity at low weight...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...