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Augmented Reality in Pediatric Septic Shock Simulation: Randomized Controlled Feasibility Trial.

Regina L Toto1, Ethan S Vorel1, Khoon-Yen E Tay1

  • 1Division of Emergency Medicine, Department of Pediatrics, The Children's Hospital of Philadelphia, Philadelphia, PA, United States.

JMIR Medical Education
|October 6, 2021
PubMed
Summary

This study developed an augmented reality app for pediatric septic shock simulation. The app, PediSepsisAR, showed feasibility in measuring fluid administration and may improve awareness of patient perfusion during simulations.

Keywords:
applicationaugmented realitychildrenfluid administrationpediatricsseptic shocksimulationsimulation-based education

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Area of Science:

  • Pediatric critical care medicine
  • Medical simulation technology
  • Augmented reality applications

Background:

  • Septic shock in children is a critical condition requiring rapid resuscitation.
  • Simulation-based education is vital for training pediatric care providers.
  • Effective management of pediatric septic shock necessitates timely interventions.

Purpose of the Study:

  • To design and implement PediSepsisAR, an augmented reality app for pediatric septic shock simulation.
  • To assess the feasibility of measuring fluid administration timing and volume during simulation.
  • To evaluate PediSepsisAR's effectiveness as an educational tool in enhancing awareness and recognition of critical patient status.

Main Methods:

  • A randomized controlled feasibility trial involving 50 pediatric care providers.
  • Participants were randomized to either the PediSepsisAR group or a traditional simulation control group.
  • Key metrics included time to fluid administration and time to recognition of critical patient status.

Main Results:

  • The PediSepsisAR app was successfully implemented, and data on fluid administration were captured for all participants.
  • No statistically significant differences were found in the time to fluid administration or recognition of patient status between the groups.
  • A majority of participants in the PediSepsisAR group reported enhanced awareness of patient perfusion.

Conclusions:

  • An augmented reality app (PediSepsisAR) was developed for pediatric septic shock simulation.
  • The feasibility of measuring fluid administration parameters during simulation was demonstrated.
  • PediSepsisAR shows potential in improving participants' understanding of abnormal perfusion in simulated pediatric septic shock cases.