A new generation of coating extracorporeal circuitry with biocompatible polymers has entered the North American perfusion market. This new biomimetic coating process uses synthetic phosphorylcholine (PC) containing polymers to bond covalently to the surface of the Sorin Monolyth® oxygenator, under the brand name of Mimesys®. In part one of a three-part investigation, 160 Mimesys®-coated oxygenators were randomly evaluated against 36 uncoated oxygenators for blood flow, hemodynamic resistance, and pressure differentials. In part two, retrospective analysis of platelet data collected in this study was compared with platelet data collected from a previous investigation using uncoated Monolyth oxygenators with albumin and crystalloid perfusates...
The new Trillium Biopassive Surface is a coating designed to minimize the adsorption of protein and ...
Extracorporeal life support (ECLS) is a class of technologies used to support or replace the functio...
This study was designed to investigate the effect of surface coating on platelet count drop during c...
A new generation of coating extracorporeal circuitry with biocompatible polymers has entered the Nor...
The present study was designed to compare the biocompatibility of three cardiopulmonary bypass setup...
The use of arterial line filters has long been a standard of practice in the field of cardiopulmonar...
An investigation was conducted to evaluate the effect that surface coating of the hollow-fiber membr...
Objective: The aim of this study is to evaluate the use of a new coating, mimicking the outer cell m...
Objectives: The surface coating of a synthetic surface is currently investigated to decrease the har...
Background: Two types of surface coating for cardiopulmonary bypass (CPB) are used: bioactive (hepar...
The purpose of this double-blind prospective and randomized study was to examine the effects of surf...
Aim: To investigate and compare uncoated and phosphorylcholine-coated oxygenators in terms of induct...
PMEA is a hydrophilic polymer coating with a unique design that minimizes the adsorption and denatur...
Aim: To investigate and compare uncoated and phosphoryl-choline-coated oxygenators in terms of induc...
The new Trillium Biopassive Surface is a coating designed to minimize the adsorption of protein and ...
Extracorporeal life support (ECLS) is a class of technologies used to support or replace the functio...
This study was designed to investigate the effect of surface coating on platelet count drop during c...
A new generation of coating extracorporeal circuitry with biocompatible polymers has entered the Nor...
The present study was designed to compare the biocompatibility of three cardiopulmonary bypass setup...
The use of arterial line filters has long been a standard of practice in the field of cardiopulmonar...
An investigation was conducted to evaluate the effect that surface coating of the hollow-fiber membr...
Objective: The aim of this study is to evaluate the use of a new coating, mimicking the outer cell m...
Objectives: The surface coating of a synthetic surface is currently investigated to decrease the har...
Background: Two types of surface coating for cardiopulmonary bypass (CPB) are used: bioactive (hepar...
The purpose of this double-blind prospective and randomized study was to examine the effects of surf...
Aim: To investigate and compare uncoated and phosphorylcholine-coated oxygenators in terms of induct...
PMEA is a hydrophilic polymer coating with a unique design that minimizes the adsorption and denatur...
Aim: To investigate and compare uncoated and phosphoryl-choline-coated oxygenators in terms of induc...
The new Trillium Biopassive Surface is a coating designed to minimize the adsorption of protein and ...
Extracorporeal life support (ECLS) is a class of technologies used to support or replace the functio...
This study was designed to investigate the effect of surface coating on platelet count drop during c...