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A Mouse Model of Single and Repetitive Mild Traumatic Brain Injury
Published on: June 20, 2017
Defining Mild Traumatic Brain Injury: From Research Definition to Clinical Practice
Kyle Harris1, Anthony Brusnahan1, Samantha Shugar1
1Department of Surgery, Wright State University, Dayton, Ohio.
Introduction:
Approximately 75% of traumatic brain injuries (TBIs) qualify as mild. However, there exists no universally agreed upon definition for mild TBI (mTBI). Consequently, treatment guidelines for this group are lacking. The Center for Disease Control (CDC), American College of Rehabilitation Medicine (ACRM), Veterans Affairs and Department of Defense (VA/DoD), Eastern Association for the Surgery of Trauma (EAST), and the University of Arizona's Brain Injury Guidelines (BIG) have each published differing definitions for mTBI. The aim of this study was to compare the ability of these definitions to correctly classify mTBI patients in the acute care setting.
Methods:
A single-center, retrospective cohort study comparing the performance of the varying definitions of mTBI was performed at a Level I trauma center from August 2015 to December 2018. Definitions were compared by sensitivity, specificity, positive predictive value, negative predictive value, as well as overtriage and undertriage rates. Finally, a cost-savings analysis was performed.
Results:
We identified 596 patients suffering blunt TBI with Glasgow Coma Scale 13-15. The CDC/ACRM definitions demonstrated 100% sensitivity but 0% specificity along with the highest rate of undertriage and TBI-related mortality. BIG 1 included nearly twice as many patients than EAST and VA/DoD while achieving a superior positive predictive value and undertriage rate.
Conclusions:
The BIG definition identified a larger number of patients compared to the VA/DoD and EAST definitions while having an acceptable and more accurate overtriage and undertriage rate compared to the CDC and ACRM. By eliminating undertriage and minimizing overtriage rates, the BIG maintains patient safety while enhancing the efficiency of healthcare systems. Using the BIG definition, a cost savings of $395,288.95-$401,263.95 per year could be obtained at our level 1 trauma facility without additional mortality.
Insights
The University of Arizona's Brain Injury Guidelines (BIG) definition for mild traumatic brain injury (mTBI) offers improved patient safety and healthcare efficiency. This definition minimizes undertriage and overtriage, potentially saving costs without increasing mortality.
Area of Science:
- Trauma Surgery
- Neurology
- Emergency Medicine
Background:
- Mild traumatic brain injury (mTBI) accounts for 75% of TBIs, yet lacks a universal definition.
- Disparate definitions from CDC, ACRM, VA/DoD, EAST, and BIG hinder consistent treatment guidelines.
- This study addresses the need for a standardized mTBI definition in acute care.
Purpose of the Study:
- To compare the diagnostic performance of various mTBI definitions.
- To evaluate the ability of different guidelines to accurately classify mTBI patients.
- To assess the impact of mTBI definitions on patient classification and healthcare efficiency.
Main Methods:
- Retrospective cohort study of 596 blunt TBI patients (GCS 13-15) at a Level I trauma center.
- Comparison of mTBI definitions based on sensitivity, specificity, PPV, NPV, overtriage, and undertriage rates.
- Inclusion of a cost-savings analysis.
Main Results:
- CDC/ACRM definitions showed 100% sensitivity but 0% specificity, with high undertriage and mortality.
- The BIG definition identified more patients than EAST and VA/DoD, with better positive predictive value and lower undertriage.
- BIG demonstrated superior performance over CDC/ACRM in balancing sensitivity and specificity.
Conclusions:
- The BIG definition identifies more mTBI patients than VA/DoD and EAST, with improved overtriage/undertriage rates compared to CDC/ACRM.
- BIG enhances patient safety by reducing undertriage and improves healthcare efficiency by minimizing overtriage.
- Implementing the BIG definition could yield significant annual cost savings ($395K-$401K) at a Level 1 trauma facility without increasing mortality.
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