改进 ECMO 治疗:监测氧合器功能,确定关键指标、因素和更换考虑因素

Mr. Salman Pervaiz Butt, Nabeel Razzaq, Yasir Saleem, Bill Cook, Salman Abdulaziz
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摘要

导言:体外膜肺氧合(ECMO)回路更换的最佳时机对于成功治疗严重心肺功能衰竭患者至关重要。本综述探讨了影响 ECMO 循环中氧合器更换时机的各种因素。通过考虑这些因素,临床医生可以做出明智的决定,确保及时、有效地更换氧合器,提高患者的治疗效果,优化 ECMO 治疗的实施。方法:使用多个学术数据库和相关关键词对有关 ECMO 循环和氧合器更换的相关研究进行了全面检索。纳入了 2017 年至 2023 年间发表的研究,结果有 40 项研究符合纳入标准。讨论:膜氧合机内的血栓形成及其对功能障碍的影响被认为是重要的诱因,突出了监测凝血参数和气体交换的重要性。在确定是否需要使用氧合器或更换回路时,包括纤维蛋白原水平、膜前和膜后血气、血浆游离血红蛋白、D-二聚体、血小板功能、流量和压力以及抗凝策略在内的几个因素被认为是重要的考虑因素。此外,多学科团队的参与和充分准备也是这一过程中的关键因素。结论:总之,管理 ECMO 治疗中的回路更换需要考虑纤维蛋白原水平、血气、血浆游离血红蛋白、D-二聚体、血小板功能、流量、压力和抗凝策略等因素。通过监测这些参数,可以及早发现问题、及时干预并优化 ECMO 治疗。标准化方案、个性化抗凝方法和无创监测技术可以提高电路更换的安全性和有效性。要推进 ECMO 管理并提高患者的治疗效果,还需要进一步的研究和合作。
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Improving ECMO Therapy: Monitoring Oxygenator Functionality and Identifying Key Indicators, Factors, and Considerations for Changeout
Introduction: The optimal timing for extracorporeal membrane oxygenation (ECMO) circuit change-out is crucial for the successful management of patients with severe cardiopulmonary failure. This comprehensive review examines the various factors that influence the timing of oxygenator replacement in the ECMO circuit. By considering these factors, clinicians can make informed decisions to ensure timely and effective change-out, enhancing patient outcomes and optimizing the delivery of ECMO therapy.   Methodology: A thorough search of relevant studies on ECMO circuit and oxygenator change-out was conducted using multiple scholarly databases and relevant keywords. Studies published between 2017 and 2023 were included, resulting in 40 studies that met the inclusion criteria.   Discussion: Thrombosis within the membrane oxygenator and its impact on dysfunction were identified as significant contributors, highlighting the importance of monitoring coagulation parameters and gas exchange. Several factors, including fibrinogen levels, pre and post-membrane blood gases, plasma free hemoglobin, D-dimers, platelet function, flows and pressures, and anticoagulation strategy, were found to be important considerations when determining the need for an oxygenator or circuit change-out. The involvement of a multidisciplinary team and thorough preparation were also highlighted as crucial aspects in this process.   Conclusion: In conclusion, managing circuit change-outs in ECMO therapy requires considering factors such as fibrinogen levels, blood gases, plasma free hemoglobin, D-dimers, platelet function, flows, pressures, and anticoagulation strategy. Monitoring these parameters allows for early detection of issues, timely interventions, and optimized ECMO therapy. Standardized protocols, personalized anticoagulation approaches, and non-invasive monitoring techniques can improve safety and effectiveness of circuit change-outs. Further research and collaboration are needed to advance ECMO management and enhance patient outcomes.
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