Afleveringen

  • It's three in the morning. Your patient is proned, paralysed, on 100% oxygen, and his P/F ratio is 70. Do you keep cranking the ventilator — or do you pick up the phone?

    In this episode Mike and Calum work through veno-venous ECMO the way it actually gets used on an ICU: what it does, who it's for, and the things that catch people out at the bedside.

    We cover the single most important idea in ECMO — that it doesn't treat anything, it's a bridge — and why that reframes every decision you make. We get into the physiology consultants love to quiz you on (sweep gas for CO2, blood flow for oxygen, and why a septic, hyperdynamic patient can desaturate with a perfectly functioning circuit). We walk through who actually qualifies, using the EOLIA and CESAR thresholds, the Murray score, and the harder question of whether the lungs have a plausible route back.

    Then we take an honest look at the evidence. CESAR randomised to referral, not to ECMO. EOLIA was stopped for futility with an 11% mortality gap — and we unpick why the 28% crossover in the control arm makes "negative trial" the wrong conclusion, and what the individual-patient-data meta-analysis and the COVID-era NHS England data added.

    Finally, the practical half: the nationally commissioned UK centres (now including Barts, Bristol and Newcastle) and how to make a referral that gets your patient assessed fast; cannulation configurations; lung-rest ventilation and the bleeding-versus-clotting balancing act; and a rapid-fire troubleshooting round — recirculation, the suddenly desaturating patient, line chatter, and the failing oxygenator. Plus why Harlequin syndrome is a VA problem, not a VV one.

    Chapters

    (00:00) Cold open — 3am, and a P/F of 70(01:16) What ECMO actually is (and isn't)(03:22) Sweep vs flow — the physiology you'll be quizzed on(05:22) Who actually gets cannulated: EOLIA, CESAR, Murray, RESP(07:02) Optimise first — and prone them(07:40) The evidence, honestly: CESAR and EOLIA(10:15) The UK service: 8 commissioned centres(11:11) Cannulation and configurations(12:31) Day-to-day: lung rest and anticoagulation(13:54) Troubleshooting at 2am(16:07) Harlequin — why it's a VA problem(16:49) Weaning and the sweep-off trial(17:49) Wrap-up

    Key takeaways

    ECMO is a bridge, not a treatment — no bridgeable destination, no bridgeSweep gas controls CO2; blood flow controls oxygenationVV-ECMO provides no haemodynamic support — preserved cardiac function is a prerequisiteOptimise and prone before you referRecirculation is the VV gremlin; Harlequin is a VA phenomenon

    References

    Peek GJ et al. CESAR trial. Lancet 2009Combes A et al. EOLIA trial. NEJM 2018Goligher EC et al. Bayesian re-analysis of EOLIA. JAMA 2018Combes A et al. CESAR/EOLIA individual patient data meta-analysisELSO Guidelines: Management of Adult Patients Supported with VV-ECMO (2021)NHS England Adult ECMO Service SpecificationCamporota L et al. Outcomes of the NHS England National ECMO Service. BJA 2021

    This podcast is for medical education for healthcare professionals. It is not clinical advice — always follow your local protocols and your regional ECMO centre's guidance.

  • Zijn er afleveringen die ontbreken?

    Klik hier om de feed te vernieuwen.