TEAMs go VR-validating the TEAM in a virtual reality (VR) medical team training.

Adv Simul (Lond)

Department of Emergency Medicine, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.

Published: September 2024

AI Article Synopsis

  • Inadequate collaboration in healthcare can result in medical errors, making interdisciplinary teamwork training crucial, and virtual reality (VR) simulations offer a cost-effective solution for such training.
  • The study involved 42 medical and nursing students participating in a VR-based scenario, where their performance was evaluated using the Team Emergency Assessment Measure (TEAM), which showed high reliability and internal consistency.
  • Results indicated that the TEAM tool is a reliable and valid way to assess team dynamics in VR training, emphasizing its potential to enhance medical education and improve interdisciplinary assessments in various learning contexts.

Article Abstract

Background: Inadequate collaboration in healthcare can lead to medical errors, highlighting the importance of interdisciplinary teamwork training. Virtual reality (VR) simulation-based training presents a promising, cost-effective approach. This study evaluates the effectiveness of the Team Emergency Assessment Measure (TEAM) for assessing healthcare student teams in VR environments to improve training methodologies.

Methods: Forty-two medical and nursing students participated in a VR-based neurological emergency scenario as part of an interprofessional team training program. Their performances were assessed using a modified TEAM tool by two trained coders. Reliability, internal consistency, and concurrent validity of the tool were evaluated using intraclass correlation coefficients (ICC) and Cronbach's alpha.

Results: Rater agreement on TEAM's leadership, teamwork, and task management domains was high, with ICC values between 0.75 and 0.90. Leadership demonstrated strong internal consistency (Cronbach's alpha = 0.90), while teamwork and task management showed moderate to acceptable consistency (alpha = 0.78 and 0.72, respectively). Overall, the TEAM tool exhibited high internal consistency (alpha = 0.89) and strong concurrent validity with significant correlations to global performance ratings.

Conclusion: The TEAM tool proved to be a reliable and valid instrument for evaluating team dynamics in VR-based training scenarios. This study highlights VR's potential in enhancing medical education, especially in remote or distanced learning contexts. It demonstrates a dependable approach for team performance assessment, adding value to VR-based medical training. These findings pave the way for more effective, accessible interdisciplinary team assessments, contributing significantly to the advancement of medical education.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11389291PMC
http://dx.doi.org/10.1186/s41077-024-00309-zDOI Listing

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