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Updated: May 22, 2026

Development of an Uncomplicated Mild Traumatic Brain Injury Model Modified by Weight-Drop Method and Evidenced by Magnetic Resonance Imaging
Published on: April 11, 2025
Acute evaluation of pediatric patients with minor traumatic brain injury
Melissa M Tavarez1, Shireen M Atabaki, Stephen J Teach
1Division of Emergency Medicine, Children's National Medical Center, Washington, District of Columbia, USA. MTavarez@cnmc.org
Insights
Clinical prediction rules, like the PECARN rules, help identify children with minor traumatic brain injury (TBI) who do not need cranial CT scans or hospitalization. S100B testing may also aid in this assessment.
Area of Science:
- Pediatric Emergency Medicine
- Neurotrauma
- Diagnostic Imaging
Background:
- Minor traumatic brain injury (TBI) is common in children presenting to emergency departments.
- Cranial computed tomography (CT) use has increased significantly for pediatric TBI.
- Identifying low-risk TBI cases is crucial to avoid unnecessary imaging and healthcare costs.
Purpose of the Study:
- To review current literature on clinical prediction rules for cranial CT in pediatric minor TBI.
- To evaluate the necessity of hospitalization for children with minor TBI.
- To assess the role of S100B testing in managing pediatric TBI.
Main Methods:
- Literature review of recent studies on pediatric TBI management.
- Analysis of clinical prediction rules, focusing on PECARN.
- Evaluation of evidence regarding hospitalization and S100B testing utility.
Main Results:
- Most children with TBI have mild injury (GCS 14-15) with rare significant intracranial injury.
- The PECARN rules are validated for clinical application in identifying low-risk TBI.
- Children with low-risk TBI can be safely discharged without prolonged observation.
- S100B testing shows potential as an adjunct for clinical evaluation in TBI.
Conclusions:
- Validated clinical prediction rules, particularly PECARN, can reduce unnecessary CT scans and hospitalizations in children with minor TBI.
- S100B testing requires further research but may assist in identifying low-risk pediatric TBI cases.
Purpose Of Review:
This review focuses on minor traumatic brain injury (TBI), evaluates the most recent literature regarding clinical prediction rules for the use of cranial computed tomography (CT) in children presenting with minor TBI, reviews the evidence on the need for hospitalization in children with minor TBI, and evaluates the role of S100B testing.
Recent Findings:
The majority of children presenting to an emergency department (ED) after TBI have a Glasgow Coma Scale (GCS) of 14-15, and the rate of clinically significant intracranial injury is exceedingly rare. Nevertheless, the number of cranial CTs performed in the US has increased dramatically over the past two decades. Several clinical prediction rules have been developed to aid the clinician in identifying children with low-risk TBI, but only the Pediatric Emergency Care Applied Research Network (PECARN) rules have been sufficiently validated to warrant clinical application. Two recent studies provide evidence that children with low-risk TBI can be safely discharged from the ED and do not require prolonged hospitalization for neurologic observation. Lastly, studies evaluating the diagnostic utility of S100B in patients with TBI have shown that it may be a useful adjunct to the clinical evaluation and aid in minimizing neuroimaging.
Summary:
Clinical prediction rules, most notably the PECARN rules, can be applied to determine children with low-risk TBI and help decrease unnecessary CT use and hospitalizations. S100B testing requires further investigation, but may serve as an adjunct in determining children with low-risk TBI.
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