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Radiation dose associated with CT-guided drain placement for pediatric patients
Cody J Schwartz1, Ari J Isaacson2, Lynn Ansley Fordham2
1Department of Radiology, UNC Health Care, University of North Carolina at Chapel Hill, 101 Manning Drive, CB 7510, Chapel Hill, NC, 27599, USA. Cody.Schwartz@unchealth.unc.edu.
Insights
Radiation doses from CT-guided drain placements in children are comparable to diagnostic imaging ranges. This study quantifies effective dose for pediatric procedures, aiding communication with parents and providers.
Area of Science:
- Medical Imaging
- Pediatric Radiology
- Radiation Dosimetry
Background:
- Limited data exists on radiation doses for CT-guided procedures in pediatric patients.
- Accurate dose estimation is crucial for pediatric interventional radiology.
Purpose of the Study:
- To quantify radiation dose associated with pediatric CT-guided drain placement.
- To estimate effective dose for drain placement and follow-up evaluations.
Main Methods:
- Retrospective review of pediatric CT-guided drain placements (2008-2013).
- Compilation of patient data, CT dose-length product, fluoroscopy time, and sinogram data.
- Conversion of radiation metrics to effective dose using Monte Carlo simulations and age-appropriate factors.
Main Results:
- Fifty-two pediatric drainages were analyzed (mean age 11.0 years).
- Mean effective dose for diagnostic CTs was 7.3 mSv; for drainages and follow-up, it was 5.3 mSv.
- 62% of children had effective doses below 5 mSv.
Conclusions:
- Pediatric CT-guided drain placements result in radiation doses comparable to diagnostic ranges.
- Findings provide valuable data for discussing radiation exposure with families and clinicians.
Background:
To date, there are limited radiation dose data on CT-guided procedures in pediatric patients.
Objective:
Our goal was to quantify the radiation dose associated with pediatric CT-guided drain placement and follow-up drain evaluations in order to estimate effective dose.
Materials And Methods:
We searched the electronic medical record and picture archiving and communication system (PACS) to identify all pediatric (<18 years old) CT-guided drain placements performed between January 2008 and December 2013 at our institution. We compiled patient data and radiation dose information from CT-guided drain placements as well as pre-procedural diagnostic CTs and post-procedural follow-up fluoroscopic abscess catheter injections (sinograms). Then we converted dose-length product, fluoroscopy time and number of acquisitions to effective doses using Monte Carlo simulations and age-appropriate conversion factors based on annual quality-control testing.
Results:
Fifty-two drainages were identified with mean patient age of 11.0 years (5 weeks to 17 years). Most children had diagnoses of appendicitis (n=23) or inflammatory bowel disease (n=11). Forty-seven patients had diagnostic CTs, with a mean effective dose of 7.3 mSv (range 1.1-25.5 mSv). Drains remained in place for an average of 16.9 days (range 0-75 days), with an average of 0.9 (0-5) sinograms per patient in follow-up. The mean effective dose for all drainages and follow-up exams was 5.3 mSv (0.7-17.1) and 62% (32/52) of the children had effective doses less than 5 mSv.
Conclusion:
The majority of pediatric patients who have undergone CT-guided drain placements at our institution have received total radiation doses on par with diagnostic ranges. This information could be useful when describing the dose of radiation to parents and providers when CT-guided drain placement is necessary.
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