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DTSTART:19700308T020000
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DTSTART:19701101T020000
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DTSTAMP:20251016T135126Z
LOCATION:Grand A
DTSTART;TZID=America/Chicago:20251016T154000
DTEND;TZID=America/Chicago:20251016T160000
UID:HFESAM_ASPIRE 2025_sess233_LECT148@linklings.com
SUMMARY:Using In-Situ Simulations to Develop Patient Safety Interventions 
 in Community Retail Pharmacies
DESCRIPTION:Katherine G. Moore and Jamie A. Stone (University of Wisconsin
 -Madison School of Nursing, SAMS (Systems Approach to Medication Safety) L
 ab); Aaron M. Gilson (University of Wisconsin-Madison School of Pharmacy, 
 Sonderegger Research Center); Emily L. Hoffins, Rutuja Gadgil, Shiying Mai
 , Stephanie M. Resendiz, and James H. Ford II (University of Wisconsin-Mad
 ison School of Pharmacy); and Michelle A. Chui (University of Wisconsin-Ma
 dison School of Nursing, SAMS (Systems Approach to Medication Safety) Lab)
 \n\nIn-situ simulations occur in clinical environments where the simulated
  practice typically happens. Despite their widespread adoption in training
  and evaluation, utilizing in-situ simulations for active development and 
 quality improvement within healthcare is just emerging. The Engineering Re
 silient Community Pharmacies (ENRICH) Patient Safety Learning Lab will uti
 lize in-situ simulations in a closed community pharmacy to develop patient
  safety strategies that will become the components of a Medication Safety 
 Map (MedSafeMapTM). Simulations will take place in three iterative stages,
  allowing the embedding of MedSafeMap into pharmacy work systems without r
 isking patient safety during development and testing. Real-time end-user f
 eedback will inform meaningful ongoing modifications to MedSafeMap.\n\nThe
  innovative nature of this methodological approach allows for a full atten
 tion shift to the intervention’s fit in the existing health system, and aw
 ay from real-time patient safety concerns. This methodology could prove ad
 vantageous for macroergonomic research looking to examine system changes w
 hile protecting those impacted by the system. Ultimately, this process wil
 l allow us to develop a solution that seamlessly integrates into pharmacy 
 workflows, aligns with staff needs, and enhances patient safety without in
 troducing inefficiencies. This presentation will describe the protocol and
  tools necessary to create simulations, and methods to iteratively develop
  patient safety strategies.\n\nTrack: Macroergonomics\n\n
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