Potger Kieron C, McMillan Darryl, Ambrose Mark
J Extra Corpor Technol. 2014 Sep;46(3):229-38.
Arterial filters used in the extracorporeal circuit (ECC) have been shown to minimize cerebral injury by capturing particulate matter and microbubbles. We clinically use the Affinity NT oxygenator with an Affinity arterial filter attached ("Affinity system"). The new Affinity Fusion oxygenator ("Fusion") incorporates integrated arterial filtering. Our aim was to determine if the Fusion oxygenator was as safe as the Affinity system in terms of relative microbubble transmission of introduced air. A recirculating in vitro circuit primed with blood was used to compare the Fusion with the Affinity system. Microbubbles were detected using a GAMPT BC100 Doppler in the oxygenator-arterial filter outflow line. Measurements were taken 1 minute before and 3 minutes after bolusing 30 mL air proximal to the venous reservoir while altering pump flow rates (3 L/min; 5 L/min). Both the Fusion and Affinity system transmitted microbubbles during air injection. Microbubble volume transmitted at 5 L/min pump flow was significantly greater than at 3 L/min in both systems. The Fusion tended to transmit fewer bubbles, less bubble volume, and smaller sized bubbles than the Affinity system. Under the parameters of this in vitro study, the Affinity Fusion oxygenator with an integrated arterial filter is as safe as the Affinity NT oxygenator with a separate arterial filter in terms of microbubble transmission. However, more research is needed to confirm this study's findings and generalizability to the clinical environment. As both oxygenator-arterial filter systems transmitted microbubbles during air introduction, it is important to develop strategies to minimize microbubble entry into the ECC.
体外循环(ECC)中使用的动脉滤器已被证明可通过捕获颗粒物和微气泡来将脑损伤降至最低。我们临床使用附有Affinity动脉滤器的Affinity NT氧合器(“Affinity系统”)。新型Affinity Fusion氧合器(“Fusion”)采用了集成动脉过滤功能。我们的目的是确定就引入空气的相对微气泡传输而言,Fusion氧合器是否与Affinity系统一样安全。使用预充血液的体外循环回路将Fusion与Affinity系统进行比较。在氧合器 - 动脉滤器流出管路中使用GAMPT BC100多普勒仪检测微气泡。在静脉储血器近端注入30 mL空气前1分钟和注入后3分钟进行测量,同时改变泵流速(3 L/min;5 L/min)。在注入空气期间,Fusion和Affinity系统均传输微气泡。在两个系统中,泵流速为5 L/min时传输的微气泡体积均显著大于3 L/min时。与Affinity系统相比,Fusion传输的气泡数量更少、气泡体积更小且气泡尺寸更小。在这项体外研究的参数下,就微气泡传输而言,带有集成动脉滤器的Affinity Fusion氧合器与带有单独动脉滤器的Affinity NT氧合器一样安全。然而,需要更多研究来证实本研究的结果及其对临床环境的可推广性。由于两种氧合器 - 动脉滤器系统在引入空气期间均传输微气泡,因此制定策略以尽量减少微气泡进入ECC非常重要。