Proper wound healing necessitates both coagulation (the formation of a blood clot) and fibrinolysis (the dissolution of a blood clot). A thrombus resistant to clot dissolution can obstruct blood flow , leading to vascular pathologies. This study seeks to understand the mechanisms by which individual fibrin fibers , the main structural component of blood clots , are cleared from a local volume during fibrinolysis. We observed 2-D fibrin networks during lysis by plasmin , recording the clearance of each individual fiber. We found that , in addition to transverse cleavage of fibers , there were multiple other pathways by which clot dissolution occurred , including fiber bundling , buckling , and collapsing. These processes are all inf...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...
Fibrin is an elastomeric protein forming highly extensible fiber networks that provide the scaffold ...
Proteolytic degradation of fibrin, the major structural component in blood clots, is critical both d...
Proper wound healing necessitates both coagulation (the formation of a blood clot) and fibrinolysis ...
Proper wound healing necessitates both coagulation (the formation of a blood clot) and fibrinolysis ...
<div><p>Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in wh...
Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in which plas...
Fibrinolysis is the enzymatic digestion of fibrin, the primary structural component in blood clots. ...
The formation and dissolution of blood clots is both a biochemical and a biomechanical process. Whil...
The formation and dissolution of blood clots is both a biochemical and a biomechanical process. Whil...
Fibrin is a viscoelastic proteinaceous polymer that determines the deformability and integrity of bl...
© 2019 Acta Materialia Inc. Fibrin is a viscoelastic proteinaceous polymer that determines the defor...
© 2019 Acta Materialia Inc. Fibrin is a viscoelastic proteinaceous polymer that determines the defor...
Fibrin is the major determinant of the mechanical stability and integrity of blood clots and thrombi...
Blood clots and thrombi consist primarily of a mesh of branched fibers made of the protein fibrin. W...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...
Fibrin is an elastomeric protein forming highly extensible fiber networks that provide the scaffold ...
Proteolytic degradation of fibrin, the major structural component in blood clots, is critical both d...
Proper wound healing necessitates both coagulation (the formation of a blood clot) and fibrinolysis ...
Proper wound healing necessitates both coagulation (the formation of a blood clot) and fibrinolysis ...
<div><p>Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in wh...
Fibrin fibers form the structural backbone of blood clots; fibrinolysis is the process in which plas...
Fibrinolysis is the enzymatic digestion of fibrin, the primary structural component in blood clots. ...
The formation and dissolution of blood clots is both a biochemical and a biomechanical process. Whil...
The formation and dissolution of blood clots is both a biochemical and a biomechanical process. Whil...
Fibrin is a viscoelastic proteinaceous polymer that determines the deformability and integrity of bl...
© 2019 Acta Materialia Inc. Fibrin is a viscoelastic proteinaceous polymer that determines the defor...
© 2019 Acta Materialia Inc. Fibrin is a viscoelastic proteinaceous polymer that determines the defor...
Fibrin is the major determinant of the mechanical stability and integrity of blood clots and thrombi...
Blood clots and thrombi consist primarily of a mesh of branched fibers made of the protein fibrin. W...
When normal blood circulation is compromised by damage to vessel walls, clots are formed at the site...
Fibrin is an elastomeric protein forming highly extensible fiber networks that provide the scaffold ...
Proteolytic degradation of fibrin, the major structural component in blood clots, is critical both d...