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

Pediatrics
|March 4, 2008
PubMed

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.
Abstract

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