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Analysis of electronic medication orders with large overdoses: opportunities for mitigating dosing errors.
E S Kirkendall, M Kouril1, T Minich
1Division of Biomedical Informatics, Cincinnati Children's Hospital Medical Center , Cincinnati, Ohio.
Electronic health record (EHR) systems can have dosing errors. Analyzing large overdoses reveals system flaws, leading to improved EHR design and safer medication prescribing for patients.
Area of Science:
- Health Informatics
- Clinical Decision Support
- Medication Safety
Background:
- Electronic health record (EHR) systems often present dosing alerts that users ignore.
- System design flaws contribute to medication dosing errors.
- Analyzing large overdoses can identify necessary EHR system improvements.
Purpose of the Study:
- Develop database techniques to detect and extract large overdose orders from EHRs.
- Characterize user responses to large overdose alerts.
- Identify and mitigate causes of large-overdose errors.
Main Methods:
- Constructed a data mart of medication orders and dosing alerts from a pediatric hospital (2011-2013).
- Analyzed order processing and alert generation for large (>500%) and extreme (>10,000%) overdoses.
- Characterized user response using alert salience rate (corrective action proportion).
Main Results:
- Evaluated over 5.4 million medication orders and 2.2 million dose alerts.
- 8% of orders generated alerts, with 25% related to overdosing.
- Alert salience rates were low (4-10%), decreasing with larger overdoses; trainees had higher salience than senior staff.
Conclusions:
- Novel analytic systems are needed to understand prescriber interaction with clinical decision support (CDS).
- A new system detected large overdoses (≥500%) and identified sociotechnical error factors.
- System design changes can mitigate many large overdose errors, and EHRs should be designed to prevent them proactively.
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