We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, which are key structural components of blood clots. Using atomic force microscopy-based lateral force manipulations we determined the rupture force, FR, of fibrin fibers as a function of their diameter, D, in ambient conditions. As expected, the rupture force increases with increasing diameter; however, somewhat unexpectedly, it increases as FR ∼ D1.30±0.06. Moreover, using a combined atomic force microscopy-fluorescence microscopy instrument, we determined the light intensity, I, of single fibers, that were formed with fluorescently labeled fibrinogen, as a function of their diameter, D. Similar to the force data, we found that the light inten...
Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in which plas...
AbstractFibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties...
AbstractThe major structural component of a blood clot is a mesh of fibrin fibers. Our goal was to d...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
AbstractWe report protocols and techniques to image and mechanically manipulate individual fibrin fi...
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...
AbstractFibrin fibers form the structural scaffold of blood clots and perform 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...
Background: Blood clots perform the mechanical task of stemming the flow of blood. Objectives: To a...
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...
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...
Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in which plas...
AbstractFibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties...
AbstractThe major structural component of a blood clot is a mesh of fibrin fibers. Our goal was to d...
We report protocols and techniques to image and mechanically manipulate individual fibrin fibers, wh...
AbstractWe report protocols and techniques to image and mechanically manipulate individual fibrin fi...
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...
AbstractFibrin fibers form the structural scaffold of blood clots and perform 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...
Background: Blood clots perform the mechanical task of stemming the flow of blood. Objectives: To a...
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...
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...
Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in which plas...
AbstractFibrin fibers form the structural scaffold of blood clots. Thus, their mechanical properties...
AbstractThe major structural component of a blood clot is a mesh of fibrin fibers. Our goal was to d...