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An extracorporeal carbon dioxide removal (ECCO2R) device operating at hemodialysis blood flow rates

机译:在血液透析血流率下操作的体外二氧化碳去除(ECCO2R)器件

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摘要

Abstract Background Extracorporeal carbon dioxide removal (ECCO2R) systems have gained clinical appeal as supplemental therapy in the treatment of acute and chronic respiratory injuries with low tidal volume or non-invasive ventilation. We have developed an ultra-low-flow ECCO2R device (ULFED) capable of operating at blood flows comparable to renal hemodialysis (250 mL/min). Comparable operating conditions allow use of minimally invasive dialysis cannulation strategies with potential for direct integration to existing dialysis circuitry. Methods A carbon dioxide (CO2) removal device was fabricated with rotating impellers inside an annular hollow fiber membrane bundle to disrupt blood flow patterns and enhance gas exchange. In vitro gas exchange and hemolysis testing was conducted at hemodialysis blood flows (250 mL/min). Results In vitro carbon dioxide removal rates up to 75 mL/min were achieved in blood at normocapnia (pCO2 = 45 mmHg). In vitro hemolysis (including cannula and blood pump) was comparable to a Medtronic Minimax oxygenator control loop using a time-of-therapy normalized index of hemolysis (0.19 ± 0.04 g/100 min versus 0.12 ± 0.01 g/100 min, p = 0.169). Conclusions In vitro performance suggests a new ultra-low-flow extracorporeal CO2 removal device could be utilized for safe and effective CO2 removal at hemodialysis flow rates using simplified and minimally invasive connection strategies.
机译:摘要背景技术二氧化碳除去(ECCO2R)系统在治疗急性和慢性呼吸损伤时获得临床吸引力,急性和慢性呼吸损伤,低潮气量或非侵入性通气。我们开发了一种能够在与肾血液透析(250ml / min)相当的血液中运行的超低流量ECCO2R器件(ULFED)。可比的操作条件允许使用微创透析插管策略,其可能直接集成到现有的透析电路。方法采用环形中空纤维膜束内的旋转叶轮制造二氧化碳(CO2)去除装置,以破坏血流模式并增强气体交换。在血液透析血液流动(250ml / min)下进行体外气体交换和溶血测试。结果在Normocapnia(PCO2 = 45mmHg)上血液中血液中的体外二氧化碳除去速率高达75ml / min。体外溶血(包括套管和血液泵)与Medtronic Minimax氧吸管控制回路相当,使用治疗时间常规溶血指数(0.19±0.04g / 100 min,对0.12±0.01g / 100 min,p = 0.169 )。结论在体外性能方面表明,使用简化和微创连接策略,可以使用新的超低流体体外二氧化碳去除装置,用于使用简化和微创的连接策略在血液透析流速下进行安全有效的CO 2。

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