Background: Blood clots perform the mechanical task of stemming the flow of blood. Objectives: To advance understanding and realistic modeling of blood clot behavior we determined the mechanical properties of the major structural component of blood clots, fibrin fibers. Methods: We used a combined atomic force microscopy (AFM)/fluorescence microscopy technique to determine key mechanical properties of single crosslinked and uncrosslinked fibrin fibers. Results and conclusions: Overall, full crosslinking renders fibers less extensible, stiffer, and less elastic than their uncrosslinked counterparts. All fibers showed stress relaxation behavior (time-dependent weakening) with a fast and a slow relaxation time, 2 and 52 s. In detail, crosslin...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
AbstractAs the structural backbone of blood clots, fibrin networks carry out the mechanical task of ...
Blood clots perform an essential mechanical task, yet the mechanical behavior of fibrin fibers, whic...
Blood clots perform an essential mechanical task, yet the mechanical behavior of fibrin fibers, whic...
AbstractFibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood ...
AbstractFibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood ...
Fibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood clot. Th...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
As the structural backbone of blood clots, fibrin networks carry out the mechanical task of stemming...
As the structural backbone of blood clots, fibrin networks carry out the mechanical task of stemming...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
Fibrin networks form the structural scaffold of blood clots during hemostasis. To survive in the dyn...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
AbstractAs the structural backbone of blood clots, fibrin networks carry out the mechanical task of ...
Blood clots perform an essential mechanical task, yet the mechanical behavior of fibrin fibers, whic...
Blood clots perform an essential mechanical task, yet the mechanical behavior of fibrin fibers, whic...
AbstractFibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood ...
AbstractFibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood ...
Fibrin fibers, which are ∼100 nm in diameter, are the major structural component of a blood clot. Th...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
Fibrin fibers form the structural scaffold of blood clots and perform the mechanical task of stemmin...
As the structural backbone of blood clots, fibrin networks carry out the mechanical task of stemming...
As the structural backbone of blood clots, fibrin networks carry out the mechanical task of stemming...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
AbstractFibrin fibers form the structural scaffold of blood clots and perform the mechanical task of...
Fibrin networks form the structural scaffold of blood clots during hemostasis. To survive in the dyn...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
AbstractAs the structural backbone of blood clots, fibrin networks carry out the mechanical task of ...