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Improved Code Team Performance and Outcomes After Implementation of Moderate Fidelity In Situ Simulation in a
Frances K Woodard1, Angela S McKeta2, Luke Schroeder2
1Department of Pediatrics, Pediatric Nurse Practitioner, Medical University of South Carolina, 10 McClennan Banks Drive, Charleston, SC, 29425, USA. klinefl@musc.edu.
Insights
In situ simulation training significantly improved pediatric cardiac arrest response times and survival rates. This training enhanced code team performance, leading to better patient outcomes in critical care units.
Area of Science:
- Pediatric Cardiology
- Medical Simulation
- Emergency Medicine
Background:
- Children with cardiac disease face higher risks of in-hospital cardiac arrest.
- Infrequent cardiac arrests outside the intensive care unit (ICU) can challenge code team performance.
- Rapid administration of epinephrine is crucial for survival and neurological outcomes during cardiac arrest.
Purpose of the Study:
- To assess the impact of in situ simulation training on code team performance in a pediatric cardiac acute care unit (PCACU).
- To evaluate changes in time to the first epinephrine dose and survival rates following simulation implementation.
Main Methods:
- Moderate fidelity in situ simulation training was conducted in the PCACU starting August 2015.
- An interprofessional team of nurses, physicians, and advanced practice providers facilitated the training.
- Data on time to epinephrine for simulated and actual cardiac arrests were collected through May 2022.
Main Results:
- A reduction in time to epinephrine was observed for simulated pulseless electrical activity (PEA) scenarios (5 to 3 minutes).
- Following simulation, actual cardiac arrests in the PCACU showed a significant decrease in time to epinephrine (8 to 2 minutes).
- Survival to hospital discharge after cardiac arrest improved dramatically post-training (0% to 64%, p=0.02).
Conclusions:
- In situ simulation exercises effectively improve code team performance, specifically time to epinephrine administration.
- Optimizing code team response through simulation training can lead to enhanced patient survival and outcomes in pediatric cardiac care.
Abstract:
Children with cardiac disease suffer higher rates of in-hospital cardiac arrest. Cardiac arrest outside of the intensive care unit (ICU) is an infrequent event, which is a threat for suboptimal code team performance. Shorter time to the first epinephrine dose during cardiac arrest has been associated with improved survival and neurologic outcomes. Moderate fidelity in situ simulation training was implemented in the pediatric cardiac acute care unit (PCACU) to improve code team performance in August 2015. A small interprofessional team of simulation facilitators was developed that included nurses, physicians, and advanced practice providers. The primary outcome was time to first epinephrine dose in pulseless electrical activity (PEA) scenarios. Time to epinephrine of all simulation exercises, and actual cardiac arrests, that occurred in the PCACU were reviewed through May 2022. A total of 72 simulations were performed and 42 (58%) were PEA scenarios. A center line shift was observed for time to epinephrine for simulated PEA cardiac arrests (from 5 to 3 min). After implementation of simulation exercises, a center line shift was observed for time to epinephrine for actual cardiac arrests in the PCACU (from 8 to 2 min). Survival to hospital discharge after cardiac arrest improved after implementation of the training (0% vs. 64%, p = 0.02). Code team performance, as measured by time to epinephrine, can be improved following implementation of in situ simulation exercises in a pediatric cardiac acute care unit. Optimizing code team performance may contribute to improved patient outcomes.
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