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Pediatric Trauma in the Emergency Department: Clinical Risk Stratification, CT Utilization and Radiation Burden in a
Mustafa Safa Pepele1, Serdar Derya1, Mahmut Murat1
1Department of Emergency Medicine, Faculty of Medicine, İnönü University, Malatya 44069, Türkiye.
Insights
Pediatric trauma patients often undergo computed tomography (CT) scans, leading to significant radiation exposure. Even low-risk children can accumulate substantial radiation doses, highlighting the need for better radiation stewardship in pediatric trauma care.
Area of Science:
- Medical Imaging
- Pediatric Radiology
- Radiation Oncology
Background:
- Computed tomography (CT) is frequently used in pediatric trauma.
- Radiation exposure from CT in this population is not fully understood.
- Characterizing radiation burden across risk strata is crucial.
Purpose of the Study:
- To describe CT utilization and cumulative effective dose in pediatric trauma patients.
- To examine radiation exposure distribution across initial risk groups.
- To inform radiation stewardship interventions.
Main Methods:
- Retrospective cohort audit of pediatric trauma presentations.
- Risk stratification based on triage category and initial physiology.
- Assessment of cumulative effective dose (mSv) from scanner dose metrics.
- Secondary analyses of dose distribution by disposition and consultation pathways.
Main Results:
- 58.3% of 935 children underwent at least one CT scan.
- Significant radiation burden occurred in initially low-risk and discharged children.
- Combined-region CT protocols contributed disproportionately to higher doses.
Conclusions:
- CT utilization and radiation burden are high in pediatric trauma.
- Non-trivial radiation exposure occurs in low-risk pediatric trauma patients.
- Targeted radiation stewardship, including pathway optimization and decision tools, is recommended.
Abstract:
Background/Objective: Pediatric trauma frequently prompts computed tomography (CT) in emergency departments; however, the cumulative radiation burden and its distribution across initial clinical risk strata remain incompletely characterized. We aimed to describe CT utilization and cumulative effective dose in a tertiary care pediatric trauma cohort and examine how radiation exposure accrues across pragmatic presentation-based risk groups. Methods: We conducted a retrospective cohort audit of pediatric trauma presentations at our institution. Risk stratification was based on the triage category and readily available initial physiological parameters. CT utilization and radiation burden were assessed at the patient level using the cumulative effective dose (mSv) derived from scanner dose metrics and region-specific conversion coefficients. Secondary analyses examined the dose distribution according to ED disposition and consultation pathways. Sensitivity analyses were performed using green triage only as an "ultra-low-risk" definition. Results: Among the 935 children, 545 (58.3%) underwent at least one CT examination. Although higher-risk categories had higher CT use and higher per-patient dose, a substantial share of the cohort's cumulative radiation burden accrued in children initially classified as low-risk and/or ultimately discharged. Combined-region CT protocols contributed disproportionately to the higher dose categories. The findings were consistent in sensitivity analyses using a stricter ultra-low-risk definition. Conclusions: In this single-center audit, CT utilization and cumulative radiation burden were high, and non-trivial radiation exposure accrued among children initially classified as low-risk. These findings support targeted radiation stewardship interventions, including pathway optimization and the implementation of validated decision tools, where feasible, particularly for discharge-eligible and low-risk presentations.
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