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March 26, 2026Critical Care Medicine0 citations

1616: Strategies to Avoid Rv Failure While on Vv Ecmo

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JSJoseph ShiberFlorida CollegeFMFiras MadbakUniversity of North FloridaMKMatthew KochubaUniversity of Florida

Key Points

  • To evaluate strategies to prevent right ventricular failure (RVF) in patients undergoing V-V ECMO for ARDS.
  • Analyzed a prospectively completed ECLS registry of 50 patients on V-V ECMO.
  • Gathered additional patient data through electronic medical records (EMR).
  • Monitored RVF with echocardiography and assessed evidence of recirculation.
  • Only 8% of patients developed RVF with signs of recirculation.
  • No patients required ECMO configuration changes during the study.
  • Used techniques like APRV-TCAV and inhaled pulmonary vasodilators effectively reduced RVF rates.

Abstract

Introduction: RV failure (RVF) occurs during ARDS in 10-50% of cases and may occur at even higher rates once on V-V ECMO. It decreases survival and may require conversion of V-V ECMO to alternative configurations such as V-A, V-AV or V-PA which is further associated with lower survival. We believe that our strategy using APRV-TCAV to restore lung volume at FRC and allow spontaneous breathing, and our use of inhaled pulmonary vasodilators to continue during the initial 48 hours on ECMO avoids RVF Methods: Using our prospectively completed ECLS registry, we identified the past 50 patients requiring V-V ECMO; we then used the EMR for gathering additional data. We looked for evidence of RVF by echocardiography and for evidence of recirculation, as well as the need for ECMO reconfiguration. Results: Average age 41.6 (range 17 -76); men 28/women 22; Etiology of ARDS: medical 34 (COVID-19 11, Flu-A 9, Legionella 2, PJP 2, Aspiration 4, Severe CAP 5, Asthma 1), trauma 13 (blunt 12, penetrating 1), surgical 2, OB 1; Length of Time on ECMO 14.6 days; four patients (8%) developed RVF with evidence of recirculation, three due to periods of significantly reducing MV support while intensifying ECMO support in attempts to resolve broncho-pleural fistulas that were eventually successfully managed using Independent Lung Ventilation with resolution of recirculation, and one patient who developed fungemia with MOF due to aplastic crisis of her acute chest syndrome (these cultures only resulted positive after cannulation). No patients received conversion of ECMO configuration. Conclusions: Our rate of RVF was lower than the reported literature and we had no cases requiring ECMO reconfiguration that according to ELSO occurs in 2.4 – 4.1% of all V-V cases but up to 21% in some studies. Our use of APRV-TCAV and its associated supported spontaneous breathing while avoiding paralytics and deep sedation, as well as bridging with inhaled prostacyclin during the initial 48 hours on ECMO appear to reduce clinically significant RVF and the need to convert from V-V ECMO to V-A or hybrid forms.

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Cite This Study

Shiber et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc98fdc3bde448917efchttps://doi.org/10.1097/01.ccm.0001188460.48308.69
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Assessing Right Ventricle Over Time in Patients on Veno-Venous Extracorporeal Membrane Oxygenation: Insights From Serial Echocardiography2024 · 3 citations
  2. 2Experience and Results with VV-ECMO for Severe Acute Respiratory Failure2014 · 17 citations
  3. 3Right ventricular injury in patients with COVID-19-related ARDS eligible for ECMO support: a multicenter retrospective study2024 · 1 citations
  4. 4Association Between Veno-Venous Extracorporeal Membrane Oxygenation and Right Ventricular Dysfunction in Acute Respiratory Distress Syndrome Patients: A Multicenter Retrospective Propensity-Matched Study2026
  5. 5D-16 | VV ECMO Use in Refractory Respiratory Failure With Pulmonary Hypertension Following Multi Valve Surgery2024