Related Experiment Video
Updated: Jul 7, 2026

Improving IV Insulin Administration in a Community Hospital
Published on: June 11, 2012
Effect of computer order entry on prevention of serious medication errors in hospitalized children
Kathleen E Walsh1, Christopher P Landrigan, William G Adams
1Department of Pediatrics, University of Massachusetts Medical School/UMass Memorial Medical Center, Worcester, Massachusetts 01655, USA. walshk02@ummhc.org
Insights
Computerized physician order entry (CPOE) reduced serious pediatric medication errors by 7%, but did not decrease patient injuries. Further system refinements are needed to improve patient safety in pediatric care.
Area of Science:
- Pediatric patient safety
- Health informatics
- Medication error surveillance
Background:
- Previous studies suggest computerized physician order entry (CPOE) reduces medication errors.
- Limited comprehensive data exists on CPOE's impact on pediatric inpatient medication errors.
Purpose of the Study:
- To comprehensively evaluate the effect of CPOE on the rate of inpatient pediatric medication errors.
- To assess changes in nonintercepted serious medication errors and patient injuries post-CPOE implementation.
Main Methods:
- Interrupted time-series regression analysis of pediatric medication orders and errors.
- Chart, order, and incident report review for 627 admissions across NICU, PICU, and general pediatric wards.
- Independent review of potential errors by unaware data extractors and physicians.
Main Results:
- A 7% decrease in the rate of nonintercepted serious medication errors was observed post-CPOE.
- No significant change in the rate of patient injuries resulting from medication errors.
- Human-machine interface issues identified, particularly in pediatric medication selection and dosing.
Conclusions:
- CPOE implementation led to a modest reduction in serious pediatric medication errors.
- The observed reduction in errors was less than that reported for adult populations.
- Systematic improvements in CPOE's human-machine interface are necessary to enhance pediatric patient safety and reduce errors.
Objective:
Although initial research suggests that computerized physician order entry reduces pediatric medication errors, no comprehensive error surveillance studies have evaluated the effect of computerized physician order entry on children. Our objective was to evaluate comprehensively the effect of computerized physician order entry on the rate of inpatient pediatric medication errors.
Methods:
Using interrupted time-series regression analysis, we reviewed all charts, orders, and incident reports for 40 admissions per month to the NICU, PICU, and inpatient pediatric wards for 7 months before and 9 months after implementation of commercial computerized physician order entry in a general hospital. Nurse data extractors, who were unaware of study objectives, used an established error surveillance method to detect possible errors. Two physicians who were unaware of when the possible error occurred rated each possible error.
Results:
In 627 pediatric admissions, with 12,672 medication orders written over 3234 patient-days, 156 medication errors were detected, including 70 nonintercepted serious medication errors (22/1000 patient-days). Twenty-three errors resulted in patient injury (7/1000 patient-days). In time-series analysis, there was a 7% decrease in level of the rates of nonintercepted serious medication errors. There was no change in the rate of injuries as a result of error after computerized physician order entry implementation.
Conclusions:
The rate of nonintercepted serious medication errors in this pediatric population was reduced by 7% after the introduction of a commercial computerized physician order entry system, much less than previously reported for adults, and there was no change in the rate of injuries as a result of error. Several human-machine interface problems, particularly surrounding selection and dosing of pediatric medications, were identified. Additional refinements could lead to greater effects on error rates.
Related Concept Videos
Guidelines and Strategies for Safe Computer Charting
Maintain Confidentiality and Security:
Pharmaceutical Poisoning: Potential Scenarios
Guidelines for Nursing Documentation I
Factual:
The following points emphasize the significance of upholding accurate and unbiased documentation in healthcare.
Pharmacokinetics in Pediatric Patients: Drug Excretion
Pharmacokinetics in Pediatric Patients: Drug Distribution
Drug Dosing: Infants and Children