A Comprehensive and Improved Definition for Hospital-Acquired Pressure Injury Classification Based on Electronic

Mani Sotoodeh1, Wenhui Zhang2, Roy L Simpson2

  • 1Public Health Research Institute of University of Montreal, University of Montreal, Montreal, QC, Canada.

JMIR Medical Informatics
|January 17, 2023
PubMed

Insights

Hospital-acquired pressure injuries (HAPIs) are difficult to define due to conflicting electronic health record (EHR) data. Developing a standardized Emory HAPI (EHAPI) definition improves HAPI classification and prediction accuracy.

Area of Science:

  • Medical Informatics
  • Clinical Quality Measurement
  • Machine Learning in Healthcare

Background:

  • Hospital-acquired pressure injuries (HAPIs) affect millions annually, posing significant clinical and financial burdens.
  • Electronic health records (EHRs) offer potential for HAPI prediction, but data inconsistencies hinder model development.
  • Existing HAPI definitions lack standardization, complicating accurate identification and benchmarking of predictive models.

Purpose of the Study:

  • To identify discrepancies in HAPI documentation across various EHR data sources.
  • To develop a comprehensive and standardized definition for HAPI classification.
  • To demonstrate the impact of an improved HAPI definition on machine learning model performance.

Main Methods:

  • Assessed HAPI documentation congruence across clinical notes, diagnosis codes, procedure codes, and chart events in the MIMIC-III database.
  • Analyzed existing HAPI definitions against regulatory guidelines.
  • Proposed the Emory HAPI (EHAPI) definition and evaluated its utility in training HAPI classification models using tree-based and sequential neural network classifiers.

Main Results:

  • Significant discrepancies were found in HAPI documentation across EHR sources, with <13% of hospital stays showing multi-source PI indications.
  • Existing HAPI definitions showed poor congruence, with only 219 stays achieving consensus.
  • Classifiers trained with the proposed EHAPI definition demonstrated superior performance compared to models using other definitions.

Conclusions:

  • Standardized HAPI definitions are crucial for accurate quality assessment and incidence determination.
  • Conflicting and incomplete EHR data present challenges in defining HAPI occurrences.
  • The proposed EHAPI definition offers a robust foundation for HAPI classification and predictive modeling.
Abstract

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