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Published on: September 11, 2011
Evaluation of radiation exposure to pediatric trauma patients
Bryan Tepper1, Jane H Brice, Cherri D Hobgood
1Department of Emergency Medicine, University of North Carolina, Chapel Hill, North Carolina, USA.
Insights
Pediatric blunt trauma patients undergoing computed tomography (CT) scans receive a significant radiation dose. Transferred patients accumulate even higher radiation exposure, highlighting a critical concern in pediatric trauma care.
Area of Science:
- Medical Imaging
- Pediatric Radiology
- Trauma Care
Background:
- Pediatric trauma patients present unique diagnostic challenges.
- Computed tomography (CT) is crucial for identifying life-threatening injuries in children.
- Concerns exist regarding the cumulative radiation dose in pediatric CT imaging.
Purpose of the Study:
- To evaluate the cumulative effective radiation dose in pediatric blunt trauma patients.
- To assess patient and study characteristics influencing radiation exposure.
Main Methods:
- Retrospective analysis of pediatric blunt trauma patients (2006).
- Utilized North Carolina Trauma Registry and radiographic history (7 days post-trauma).
- Calculated cumulative effective radiation dose using dose-length product and age coefficients.
Main Results:
- Included 75 pediatric blunt trauma patients; median age 11.7 years; 64% male.
- Median Injury Severity Score was 13.8; 64% were transfer patients.
- Mean effective ionizing radiation dose was 11.4 mSv (first 24h); transferred patients had higher doses.
Conclusions:
- Pediatric blunt trauma patients incur a substantial radiation burden during initial evaluation.
- Transfer patients experience a disproportionately higher cumulative radiation dose.
Background:
Pediatric trauma patients pose a diagnostic challenge to physicians. Computed tomography (CT) imaging identifies life-threatening injuries quickly and efficiently. CT radiation dose in pediatric trauma patients is a concern.
Study Objectives:
We evaluated the cumulative effective dose of radiation received by pediatric blunt trauma patients and assessed characteristics of patients and studies received.
Methods:
We retrospectively identified pediatric blunt trauma patients at a Level I trauma center between January 1 and December 31, 2006 utilizing the North Carolina Trauma Registry. We searched the patient radiographic history for images in the 7 days after their trauma event. We calculated cumulative effective radiation dose using dose length product and age coefficients. We collected demographic information including age, sex, mechanism of injury, hospital length of stay, and discharge status.
Results:
Seventy-five pediatric blunt trauma patients with available radiographic records were included. The median age was 11.7 years; males comprised 64% of patients; median Injury Severity Score was 13.8; 64% were transfer patients; median number of CT scans during initial evaluation was 3.4 for directly seen patients and two for transferred patients. Mean effective ionizing radiation dose was 11.4 mSv for CT scans performed in the first 24 h. Sixteen percent of admitted patients had CT scans in the subsequent 6 days, with an average additional CT dose of 4 mSv. Average number of plain radiographs was five.
Conclusions:
Pediatric blunt trauma patients receive a major radiation burden in their initial evaluation. Patients who are transferred from an outside facility endure an even higher dose of radiation.
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