Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined reactive surfaces, hemodynamic flow and optical imaging routines, and thus are ideal for studies of platelet function and coagulation response. This thesis describes the use of a microfluidic approach to investigate the role of the contact pathway factors XII and XI, platelet-derived polyphosphate, and thiol isomerases in thrombus growth and to evaluate their potential as safer antithrombotic drug targets. The use of low level of corn trypsin inhibitor allowed the study of the contact pathway on collagen/kaolin surfaces with minimally disturbed whole blood sample and we demonstrated the sensitivity of this assay to antithrombotic drugs. On coll...
Hemostatic clots have a core/shell hierarchy comprised of a P-selectin positive core surrounded by a...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
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 thrombosis assays allow the control of anticoagulation, hemodynamics, pharmacology, and...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
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...
Hemostatic clots have a core/shell hierarchy comprised of a P-selectin positive core surrounded by a...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic systems allow precise control of the anticoagulation/pharmacology protocols, defined re...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
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 thrombosis assays allow the control of anticoagulation, hemodynamics, pharmacology, and...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
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...
Hemostatic clots have a core/shell hierarchy comprised of a P-selectin positive core surrounded by a...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...