In this review, we hypothesise that, next to biocompatibility, optimal blood compatibility depends on a combination of biomaterials wettability and the shear stress prevailing in the device. The wettability is discussed in seven different categories of devices, that differ substantially from each other with regard to shear stress and exposure time. These seven categories are stents, prosthetic heart valves, vascular prostheses, cardiopulmonary bypass, hemodialysis, vena cava filters and blood bags. In high shear applications, in combination with blood activation, platelet deposition and thrombosis appear to be major problems and platelet inhibitors are most effective. Exposure of blood to a large biomaterial surface, with or without antithr...
The complexity of the interactions between materials and blood makes the development of hemocompati...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...
In this review, we hypothesise that, next to biocompatibility, optimal blood compatibility depends o...
In this review, we hypothesise that, next to biocompatibility, optimal blood compatibility depends o...
Although the thrombogenic nature of the surfaces of cardiovascular devices is an important aspect of...
Although the thrombogenic nature of the surfaces of cardiovascular devices is an important aspect of...
Abstract: The main purpose of new stent technologies is to overcome unfavorable material-related in...
The aim of this thesis is to gain a better understanding of how the wettability of materials surface...
The main purpose of new stent technologies is to overcome unfavorable material-related incompatibili...
Adhesion and activation of platelets are important steps in the thrombosis of blood after contact wi...
Adhesion and activation of platelets are important steps in the thrombosis of blood after contact wi...
Hemocompatibility test of medical materials aims to detect adverse interaction between artificial su...
The complexity of the interactions between materials and blood makes the development of hemocompati...
The complexity of the interactions between materials and blood makes the development of hemocompati...
The complexity of the interactions between materials and blood makes the development of hemocompati...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...
In this review, we hypothesise that, next to biocompatibility, optimal blood compatibility depends o...
In this review, we hypothesise that, next to biocompatibility, optimal blood compatibility depends o...
Although the thrombogenic nature of the surfaces of cardiovascular devices is an important aspect of...
Although the thrombogenic nature of the surfaces of cardiovascular devices is an important aspect of...
Abstract: The main purpose of new stent technologies is to overcome unfavorable material-related in...
The aim of this thesis is to gain a better understanding of how the wettability of materials surface...
The main purpose of new stent technologies is to overcome unfavorable material-related incompatibili...
Adhesion and activation of platelets are important steps in the thrombosis of blood after contact wi...
Adhesion and activation of platelets are important steps in the thrombosis of blood after contact wi...
Hemocompatibility test of medical materials aims to detect adverse interaction between artificial su...
The complexity of the interactions between materials and blood makes the development of hemocompati...
The complexity of the interactions between materials and blood makes the development of hemocompati...
The complexity of the interactions between materials and blood makes the development of hemocompati...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...
Supraphysiological shear stress and surface-contact are recognized as driving mechanisms of platelet...