Molecular explanations for the extraordinary elasticity and extensibility of fibrin fibers are still lacking. Now, Zhmurov et al. (2011) use force spectroscopy experiments, and innovative simulations that match the time and force scales of these experiments, to study fibrinogen behavior under an applied force providing deeper insights into this process
Fibrin is a plasma protein with a central role in blood clotting and wound repair. Upon vascular inj...
AbstractWe tested what to our knowledge is a new computational model for fibrin fiber mechanical beh...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...
The recognition of pathogen surfaces by mannan-binding lectin activates MASP proteases, leading to c...
Fibrin is an elastomeric protein forming highly extensible fiber networks that provide the scaffold ...
SummaryFibrinogen, upon enzymatic conversion to monomeric fibrin, provides the building blocks for f...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
AbstractFibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties...
SummaryBlood clots must be stiff to stop hemorrhage yet elastic to buffer blood's shear forces. Upse...
Fibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties are of ...
Fibrin, the polymerized form of the soluble plasma protein fibrinogen, plays a critical role in hemo...
The structural basis of the wide variability of the physical properties of fibrin clots and the proc...
© 2018 National Academy of Sciences. All Rights Reserved. Fibrin formation and mechanical stability ...
Fibrin is a plasma protein with a central role in blood clotting and wound repair. Upon vascular inj...
Fibrin is a plasma protein with a central role in blood clotting and wound repair. Upon vascular inj...
AbstractWe tested what to our knowledge is a new computational model for fibrin fiber mechanical beh...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...
The recognition of pathogen surfaces by mannan-binding lectin activates MASP proteases, leading to c...
Fibrin is an elastomeric protein forming highly extensible fiber networks that provide the scaffold ...
SummaryFibrinogen, upon enzymatic conversion to monomeric fibrin, provides the building blocks for f...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
AbstractFibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties...
SummaryBlood clots must be stiff to stop hemorrhage yet elastic to buffer blood's shear forces. Upse...
Fibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties are of ...
Fibrin, the polymerized form of the soluble plasma protein fibrinogen, plays a critical role in hemo...
The structural basis of the wide variability of the physical properties of fibrin clots and the proc...
© 2018 National Academy of Sciences. All Rights Reserved. Fibrin formation and mechanical stability ...
Fibrin is a plasma protein with a central role in blood clotting and wound repair. Upon vascular inj...
Fibrin is a plasma protein with a central role in blood clotting and wound repair. Upon vascular inj...
AbstractWe tested what to our knowledge is a new computational model for fibrin fiber mechanical beh...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...