Grading and assessment of clinical predictive tools for paediatric head injury: a new evidence-based approach

Mohamed Khalifa1, Blanca Gallego2

  • 1Australian Institute of Health Innovation, Faculty of Medicine and Health Sciences, Macquarie University, 75 Talavera Road, North Ryde, Sydney, NSW, 2113, Australia. mohamed.khalifa@mq.edu.au.

Insights

This study grades pediatric head injury tools using the GRASP framework. PECARN, CHALICE, and CATCH are top-rated, with development quality and feasibility influencing success more than predictive performance alone.

Area of Science:

  • Pediatric Emergency Medicine
  • Clinical Decision Support Systems
  • Traumatic Brain Injury Diagnostics

Background:

  • Numerous clinical predictive tools exist for diagnosing pediatric traumatic brain injury (TBI) and guiding CT use in emergency departments.
  • Comparing these tools is challenging due to varied development methods, populations, and performance metrics.
  • Standardized, evidence-based assessment is needed to aid clinicians in selecting effective TBI predictive tools.

Purpose of the Study:

  • To grade and assess pediatric head injury predictive tools using a novel evidence-based approach.
  • To provide emergency clinicians with standardized, objective information for tool selection.
  • To identify factors contributing to the successful implementation of predictive tools.

Main Methods:

  • A focused literature review identified pediatric head injury predictive tools.
  • Tools were evaluated using the Grading and Assessment of Predictive Tools (GRASP) framework.
  • Evaluation criteria included predictive performance, usability, potential effect, and post-implementation impact.

Main Results:

  • Fourteen tools were evaluated; PECARN received the highest grade, being the only tool assessed for post-implementation impact.
  • PECARN, CHALICE, and CATCH were the highest-graded tools, with PECARN and CHALICE assessed for potential healthcare effects.
  • Tool development quality, author credibility, and research funding correlated with higher grades and successful implementation.

Conclusions:

  • The GRASP framework offers a feasible, evidence-based method for grading and comparing predictive tools.
  • Factors beyond predictive performance, such as development quality, author credibility, and research support, significantly influence tool adoption.
  • Simplicity and feasibility are critical for the successful clinical implementation of pediatric TBI predictive tools.
Abstract

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