Blood clotting system (BCS) modelling is an important issue with a plenty of applications in medicine and biophysics. The BCS main function is to form a localized clot at the site of injury preventing blood loss. Mutual influence of fibrin clot consisting mainly of fibrin polymer gel and blood flow is an important factor for BCS to function properly. The process of fibrin polymer mesh formation has not adequately been described by current mathematical models. That is why it is not possible to define the borders of growing clot and model its interaction with a blood flow. This paper main goal is to propose physically well-founded mathematical model of fibrin polymerization and gelation. The proposed model defines the total length of fibrin p...
dissertationFibrin fibers are an essential component of blood clots. They provide structural support...
A model of fibrinolysis was developed using multicomponent convection-diffusion equations with homog...
Fibrin gel polymerization, key element of blood coagulation, produces the network inside which plate...
Blood clot formation is crucial to maintain normal physiological conditions but at the same time inv...
A mathematical model of the formation of a clot (thrombosis) has been constructed in which the fibri...
Blood clot formation is crucial to maintain normal physiological conditions but at the same time inv...
AbstractBlood clot formation is crucial to maintain normal physiological conditions but at the same ...
The mechanistic modelling of blood clotting and fibrin-polymer mesh formation is of significant valu...
A mathematical model of the lysis of clots in blood vessels has been constructed on the basis of con...
Blood coagulation is an extremely complex biological process in which blood forms clots to prevent b...
Blood clots and thrombi consist primarily of a mesh of branched fibers made of the protein fibrin. W...
Although much is known about fibrin polymerization, because it is complex, the effects of various mo...
Many biological phenomena are characterized by extensive fluid mechanical and chemical reactionary s...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood fol-lowing...
dissertationFibrin fibers are an essential component of blood clots. They provide structural support...
A model of fibrinolysis was developed using multicomponent convection-diffusion equations with homog...
Fibrin gel polymerization, key element of blood coagulation, produces the network inside which plate...
Blood clot formation is crucial to maintain normal physiological conditions but at the same time inv...
A mathematical model of the formation of a clot (thrombosis) has been constructed in which the fibri...
Blood clot formation is crucial to maintain normal physiological conditions but at the same time inv...
AbstractBlood clot formation is crucial to maintain normal physiological conditions but at the same ...
The mechanistic modelling of blood clotting and fibrin-polymer mesh formation is of significant valu...
A mathematical model of the lysis of clots in blood vessels has been constructed on the basis of con...
Blood coagulation is an extremely complex biological process in which blood forms clots to prevent b...
Blood clots and thrombi consist primarily of a mesh of branched fibers made of the protein fibrin. W...
Although much is known about fibrin polymerization, because it is complex, the effects of various mo...
Many biological phenomena are characterized by extensive fluid mechanical and chemical reactionary s...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood fol-lowing...
dissertationFibrin fibers are an essential component of blood clots. They provide structural support...
A model of fibrinolysis was developed using multicomponent convection-diffusion equations with homog...
Fibrin gel polymerization, key element of blood coagulation, produces the network inside which plate...