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Full-Scale high-fidelity simulation compared to procedural simulation workshop for veno-arterial Ecmo cannulation during refractory cardiac arrest

A randomized controlled trial

Bibliographic Data

ID22424742
AuthorsMarwan Bouras (0000-0002-8335-5741, Inserm, corresponding author), Thomas Senage (0000-0001-8203-0454, Inserm), Emma Meule (Hôpital Saint-Jacques), Charles-Henri David, Chloé David (0000-0002-0257-5022, Hôpital Laennec), Guillaume Guimbretière (0000-0002-5864-0348, Hôpital Laennec), Julien Cadiet (Hôpital Saint-Jacques), Olivier Bazin (Laboratoire de Thermique et Energie de Nantes), Bertrand Rozec (0000-0002-2226-3982, Centre National de la Recherche Scientifique), Corinne Lejus-Bourdeau, Corinne Lejus‐Bourdeau (0000-0001-7783-1281, Laboratoire de Thermique et Energie de Nantes), Mickael Vourc’h (0000-0002-1576-7728, Hôpital Saint-Jacques, corresponding author)
Year2026
Publication date2026-06-02
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueBMC Medical Education (JOURNAL)
Journal identifiersISSN: 1472-6920 • E-ISSN: 1472-6920
PublisherSpringer Science and Business Media LLC (PUBLISHER)
DOI10.1186/s12909-026-09618-5
PMID42231370
OpenAlexW7163135709
LanguageEN

BACKGROUND: Veno-arterial extracorporeal membrane oxygenation (VA-ECMO) is a critical intervention for patients in refractory cardiac arrest. Rapid and high-quality cannulation is essential for timely ECMO initiation and improved patient outcomes. Therefore, optimizing educational strategies for VA-ECMO training is crucial to ensure skill acquisition and effectiveness in clinical practice. This study aimed to compare the effectiveness of full-scale high-fidelity simulation versus a procedural simulation workshop for VA-ECMO cannulation training in anesthesiology and critical care residents. METHODS: We conducted a prospective, randomized, two-arm, single-center, open-label trial at the Nantes university hospital simulation center. Thirty anesthesiology and critical care residents were randomly assigned to either a high-fidelity simulation group or a procedural simulation workshop group. Prior to the intervention, all participants completed an e-learning module on VA-ECMO cannulation. The procedural simulation workshop group underwent a 3-hour session focusing on technical skills, with guided hands-on practice. The high-fidelity simulation group participated in a full-day session incorporating immersive high-fidelity scenarios of refractory cardiac arrest, hands-on VA-ECMO cannulation, training on ECMO console management, and transesophageal echocardiography simulation. The primary outcome was total cannulation time (seconds) on a mannequin in a simulated refractory cardiac arrest scenario, measured from sterile preparation to circuit connection. Secondary outcomes included a procedural quality score, developed using a Delphi consensus method and assessed by blinded evaluators, as well as skill-specific sub-item analyses. RESULTS: Median cannulation times were similar between the procedural simulation workshop group (908 s; IQR 817-1015) and the high-fidelity simulation group (836 s; IQR 801-1029; p=0.71). Overall procedural quality scores did not significantly differ between groups. However, exploratory sub-item analyses suggested that specific procedural skills might be differentially influenced by each training modality. CONCLUSIONS: High-fidelity simulation and procedural workshops yielded similar performance for VA-ECMO cannulation. Although each may enhance specific skills, neither proved superior. Further research should determine the optimal integration of these training modalities.

Anesthesiology · Dreyfus model of skill acquisition · Extracorporeal membrane oxygenation · Intensive care · Randomized controlled trial · Simulation training · Cardiac Arrest and Resuscitation · Simulation-Based Education in Healthcare · Surgical Simulation and Training

Citation velocityhistorical
Highly citedNo

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