Objective Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure of collagen and tissue factor. However, interactions between these blood-borne and vascular components are not well understood. Approach and Results Here, we developed a method to assess whole-blood thrombus formation on microspots with defined amounts of collagen and tissue factor, allowing determination of the mechanical properties and intrathrombus composition. Confining the collagen content resulted in diminished platelet deposition and fibrin formation at high shear flow conditions, but this effect was compensated by a larger thrombus size and increased accumulation of fibrin in the luminal regions of the thrombi at the expense of the ba...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act together to pr...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Objective Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act together to pr...
Abstract: In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act toge...
Abstract: In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act toge...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Current ex vivo models of thrombosis either fail to accurately recreate the hemodynamics and focal n...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act together to pr...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Objective Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
Objective—Platelet- and fibrin-dependent thrombus formation is regulated by blood flow and exposure ...
In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act together to pr...
Abstract: In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act toge...
Abstract: In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act toge...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Current ex vivo models of thrombosis either fail to accurately recreate the hemodynamics and focal n...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
In haemostasis and thrombosis, platelet, coagulation and anticoagulation pathways act together to pr...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...