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Dosing Errors Made by Paramedics During Pediatric Patient Simulations After Implementation of a State-Wide Pediatric
Abstract:
Background: Drug dosing errors occur at a high rate for prehospital pediatric patients. To reduce errors, Michigan implemented a state-wide pediatric dosing reference (PDR), with doses listed in milliliters, the requirement that doses be drawn into a smaller syringe from a pre-loaded syringe using a stopcock, and dilution of certain drugs to different concentrations.Purpose: To evaluate the rate of medication errors, including errors of omission and commission, after implementation of a state-wide PDR.Methods: EMS crews from 15 agencies completed 4 validated, simulation scenarios: an infant seizing, an infant cardiac arrest, an 18-month-old with a burn, and 5-year-old with anaphylactic shock. Agencies were private, public, not-for-profit, for-profit, urban, rural, fire-based, and third service. EMS crews used their regular equipment and were required to carry out all the steps to administer a drug dose. Two evaluators scored crew performance via direct observation and video review. An error was defined as [Formula: see text]20% difference compared to the weight-appropriate dose. Descriptive statistics were utilized.Results: A total of 142 simulations were completed. The majority of crews were (58.3%) Emergency Medical Technician-Paramedic (EMTP)/EMTP. For the cardiac arrest scenario, 51/70 (72.9%; 95% CI: 60.9%, 82.8%) epinephrine doses were correct. There were 6 (8.6%, 95% CI: 2.0%, 15.1%) 10-fold overdoses and one (1.4%; 95% CI: -1.4%, 4.2%), 10-fold under dose. In the seizure scenario, 28/50 (56.0%; 95% CI: 42.2%, 69.8%) benzodiazepine doses were correct; 6/18 (33.3%; 95% CI: 11.5%, 55.1%) drug dilutions were incorrect resulting in dosing errors. Unrecognized air was frequently entrained into the administration syringe resulting in under doses. Overall, 31.2% (95% CI: 25.5%, 36.6%) of drug doses were incorrect. Obtaining an incorrect weight led to a drug dosing error in 18/142 (12.7%, 95% CI: 7.2%, 18.2%) cases. Errors of omission included failure to check blood sugar in the seizure scenario and failure to administer epinephrine and a fluid bolus in anaphylactic shock.Conclusion: Despite implementation of a PDR, dosing errors, including 10-fold errors, still occur at a high rate. Errors occur with dilution and length-based tape use. Further error reduction strategies, beyond a PDR and that target errors of omission, are needed for pediatric prehospital drug administration.
Insights
Pediatric dosing errors persist despite a state-wide reference tool. New strategies are needed to address medication errors in prehospital pediatric care, including those of omission.
Area of Science:
- Emergency Medicine
- Pediatric Care
- Patient Safety
Background:
- Prehospital pediatric patients experience high rates of drug dosing errors.
- Michigan implemented a state-wide pediatric dosing reference (PDR) to mitigate these errors.
- The PDR included standardized milliliters dosing, specific drawing techniques, and drug dilutions.
Purpose of the Study:
- To evaluate the frequency of medication errors, encompassing both omission and commission.
- To assess the impact of the state-wide pediatric dosing reference (PDR) on error rates.
Main Methods:
- 142 simulations were conducted across 15 diverse EMS agencies.
- Scenarios included pediatric seizure, cardiac arrest, burn, and anaphylactic shock.
- Errors were defined as doses deviating by more than 20% from the weight-appropriate dose.
Main Results:
- Overall, 31.2% of drug doses administered were incorrect.
- Significant errors included 10-fold overdoses (8.6%) and underdoses.
- Incorrect drug dilutions (33.3%) and failure to obtain correct patient weight contributed to errors.
Conclusions:
- A state-wide pediatric dosing reference (PDR) has not eliminated high rates of pediatric medication errors.
- Errors persist in drug dilution and administration techniques.
- Additional strategies targeting errors of omission are crucial for improving pediatric prehospital drug safety.
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