Interprofessional Extracorporeal Membrane Oxygenation Cardiopulmonary Resuscitation Simulations Aimed at Decreasing

Gregory K Yurasek1, Justine Fortkiewicz, Christina Duelley

  • 1From the Children's National Hospital (G.K.Y., J.F., C.D., L.A., C.P., I.G., A.S.P., P.M., J.E.B., G.H., J.W.D., M.P., C.Y.), Washington, DC; and George Washington University (A.P.), Washington, DC.

Insights

Annual extracorporeal membrane oxygenation cardiopulmonary resuscitation (ECPR) simulations significantly reduced peripheral cannulation times. These interprofessional training events improved team dynamics and streamlined complex processes for better patient outcomes.

Area of Science:

  • Pediatric Cardiology
  • Cardiovascular Surgery
  • Critical Care Medicine

Background:

  • Annual simulations in the Cardiac Intensive Care Unit (CICU) since 2013 focused on team dynamics and CPR quality.
  • In 2019-2020, simulations expanded to include surgical and ECMO teams to enhance understanding and improve ECPR processes.

Purpose of the Study:

  • To evaluate the impact of interprofessional ECPR simulations on cannulation times and process efficiency.
  • To assess the effectiveness of simulation tools like ECMO trainers and 3D-printed hearts in studying ECPR phases.

Main Methods:

  • Conducted peripheral (n=7) and central (n=7) ECPR simulations using an ECMO trainer and a 3D-printed heart.
  • Utilized an ECMO checklist for preparedness assessment and recorded simulated cannulation times.
  • Performed retrospective chart review to compare pre- and post-intervention actual cannulation times and analyzed video recordings for phase division.

Main Results:

  • Mean peripheral ECPR cannulation times significantly decreased from 71.7 to 45.1 minutes (P=0.036).
  • Central ECPR times showed a trend towards reduction, with post-intervention events shorter than the historical mean (37.8 minutes).
  • Medical versus surgical phase durations in simulations closely mirrored actual procedures (peripheral: 31.9% vs. 33.0%; central: 39.8% vs. 39.6%).

Conclusions:

  • Interprofessional ECPR simulations leading to full cardiopulmonary bypass significantly reduced peripheral cannulation times.
  • Simulation tools facilitated detailed study of medical and surgical phases, identifying areas for process improvement.
  • Further multi-site studies are warranted to confirm the impact on patient survival.
Abstract