医学
体外膜肺氧合
机械通风
通风(建筑)
体外
重症监护医学
麻醉
肺
外科
内科学
机械工程
工程类
作者
Vasileios Zochios,Daniel Brodie,Kiran Shekar,Marcus J. Schultz,Ken Kuljit S. Parhar
出处
期刊:Anaesthesia
[Wiley]
日期:2022-07-21
卷期号:77 (10): 1137-1151
被引量:6
摘要
Summary Veno‐venous extracorporeal membrane oxygenation is indicated in patients with acute respiratory distress syndrome and severely impaired gas exchange despite evidence‐based lung protective ventilation, prone positioning and other parts of the standard algorithm for treating such patients. Extracorporeal support can facilitate ultra‐lung‐protective ventilation, meaning even lower volumes and pressures than standard lung‐protective ventilation, by directly removing carbon dioxide in patients needing injurious ventilator settings to maintain sufficient gas exchange. Injurious ventilation results in ventilator‐induced lung injury, which is one of the main determinants of mortality in acute respiratory distress syndrome. Marked reductions in the intensity of ventilation to the lowest tolerable levels under extracorporeal support may be achieved and could thereby potentially mitigate ventilator‐induced lung injury and theoretically patient self‐inflicted lung injury in spontaneously breathing patients with high respiratory drive. However, the benefits of this strategy may be counterbalanced by the use of continuous deep sedation and even neuromuscular blocking drugs, which may impair physical rehabilitation and impact long‐term outcomes. There are currently a lack of large‐scale prospective data to inform optimal invasive ventilation practices and how to best apply a holistic approach to patients receiving veno‐venous extracorporeal membrane oxygenation, while minimising ventilator‐induced and patient self‐inflicted lung injury. We aimed to review the literature relating to invasive ventilation strategies in patients with acute respiratory distress syndrome receiving extracorporeal support and discuss personalised ventilation approaches and the potential role of adjunctive therapies in facilitating lung protection.
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