International audienceOBJECTIVESBioactive Carmeda® heparin-coated extracorporeal circuits (ECCs) have been shown to reduce contact phase and coagulation activation during cardiopulmonary bypass (CPB). Heparin coating is therefore effective in safely reducing coagulation during routine CPB. Balance® Biosurface is a new, recently developed biopassive coating containing negatively charged sulphonated polymers. This study sought to compare the clotting activation and thromboresistance of the Balance® (B) circuit with that of the Carmeda® (C) with full-dose systemic heparin (FDH) and reduced-dose systemic heparin (RDH).METHODSThis ex vivo study set-up comprising 40 experiments consisted of simplified ECC and circulation of freshly donated human ...
AbstractPostoperative morbidity after cardiopulmonary bypass most commonly manifests as bleeding dia...
The effect of heparin-coated perfusion circuits on blood trauma during clinical cardiopulmonary bypa...
AbstractThe hypothesis that heparin-coated perfusion circuits reduce thrombin formation and activity...
OBJECTIVES: Bioactive Carmeda® heparin-coated extracorporeal circuits (ECCs) have been shown to redu...
AbstractObjectives: Heparin coating of the cardiopulmonary bypass circuit is shown to improve the bi...
Heparin coating of an extracorporeal circuit for cardiopulmonary bypass improves the hemocompatibili...
Cardiopulmonary bypass with systemic heparinization causes trauma to blood cells and coagulation def...
AbstractCardiopulmonary bypass circuits cause morbidity during cardiac operations. Plasma proteins a...
Background: Two types of surface coating for cardiopulmonary bypass (CPB) are used: bioactive (hepar...
Extracorporeal blood circulation (ECC) for dialysis, cardiopulmonary bypass and extracorporeal membr...
AbstractObjective: Heparin coating reduces complement activation on the surface of extracorporeal ci...
This study was performed to investigate if heparin-coated extracorporeal circuits can reduce the sys...
Cardiopulmonary bypass generates a systemic inflammatory response including the activation of the co...
The present study was designed to compare the biocompatibility of three cardiopulmonary bypass setup...
AbstractObjectives: The use of heparin-coated circuits for cardiopulmonary bypass attenuates the pos...
AbstractPostoperative morbidity after cardiopulmonary bypass most commonly manifests as bleeding dia...
The effect of heparin-coated perfusion circuits on blood trauma during clinical cardiopulmonary bypa...
AbstractThe hypothesis that heparin-coated perfusion circuits reduce thrombin formation and activity...
OBJECTIVES: Bioactive Carmeda® heparin-coated extracorporeal circuits (ECCs) have been shown to redu...
AbstractObjectives: Heparin coating of the cardiopulmonary bypass circuit is shown to improve the bi...
Heparin coating of an extracorporeal circuit for cardiopulmonary bypass improves the hemocompatibili...
Cardiopulmonary bypass with systemic heparinization causes trauma to blood cells and coagulation def...
AbstractCardiopulmonary bypass circuits cause morbidity during cardiac operations. Plasma proteins a...
Background: Two types of surface coating for cardiopulmonary bypass (CPB) are used: bioactive (hepar...
Extracorporeal blood circulation (ECC) for dialysis, cardiopulmonary bypass and extracorporeal membr...
AbstractObjective: Heparin coating reduces complement activation on the surface of extracorporeal ci...
This study was performed to investigate if heparin-coated extracorporeal circuits can reduce the sys...
Cardiopulmonary bypass generates a systemic inflammatory response including the activation of the co...
The present study was designed to compare the biocompatibility of three cardiopulmonary bypass setup...
AbstractObjectives: The use of heparin-coated circuits for cardiopulmonary bypass attenuates the pos...
AbstractPostoperative morbidity after cardiopulmonary bypass most commonly manifests as bleeding dia...
The effect of heparin-coated perfusion circuits on blood trauma during clinical cardiopulmonary bypa...
AbstractThe hypothesis that heparin-coated perfusion circuits reduce thrombin formation and activity...