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Updated: May 13, 2026

X-ray Dose Reduction through Adaptive Exposure in Fluoroscopic Imaging
Published on: September 11, 2011
Prospective systematic intervention to reduce patient exposure to radiation during pediatric ureteroscopy
Paul J Kokorowski1, Jeanne S Chow, Keith J Strauss
1Division of Urology, Children's Hospital Los Angeles, Los Angeles, California.
Insights
A new quality checklist significantly reduced radiation exposure during pediatric ureteroscopy for kidney stones. This intervention dramatically lowered radiation doses, improving safety for children undergoing the procedure.
Area of Science:
- Pediatric Urology
- Medical Imaging Safety
- Quality Improvement in Healthcare
Background:
- Pediatric ureteroscopy for urolithiasis involves radiation exposure.
- Previous measurements identified targets for radiation dose reduction.
Purpose of the Study:
- To systematically reduce radiation exposure during pediatric ureteroscopy.
- To evaluate the effectiveness of a pre-fluoroscopy quality checklist.
Main Methods:
- Implementation of a pre-fluoroscopy quality checklist for ureteroscopy.
- Prospective measurement of radiation doses (entrance skin dose, midline dose) and fluoroscopy parameters.
- Comparison of outcomes before and after checklist implementation.
Main Results:
- Mean entrance skin dose decreased by 88% and midline dose by 87% (p <0.01).
- Total fluoroscopy time reduced by 67%.
- Appropriate dose rate settings increased from 51% to 93%.
Conclusions:
- A fluoroscopy quality checklist led to dramatic reductions in radiation doses for children undergoing ureteroscopy.
- Systematic evaluation and intervention effectively improved radiation safety in pediatric urolithiasis procedures.
Purpose:
After prospective measurement of radiation exposure during pediatric ureteroscopy for urolithiasis, we identified targets for intervention. We sought to systematically reduce radiation exposure during pediatric ureteroscopy.
Materials And Methods:
We designed and implemented a pre-fluoroscopy quality checklist for patients undergoing ureteroscopy at our institution as part of a quality improvement initiative. Preoperative patient characteristics, operative factors, fluoroscopy settings and radiation exposure were recorded. Primary outcomes were the entrance skin dose in mGy and midline dose in mGy before and after checklist implementation.
Results:
We directly observed 32 consecutive ureteroscopy procedures using the safety checklist, of which 27 were done in pediatric patients who met study inclusion criteria. Outcomes were compared to those in 37 patients from the pre-checklist phase. Pre-checklist and postchecklist groups were similar in patient age, total operative time or patient thickness. The mean entrance skin dose and midline dose were decreased by 88% and 87%, respectively (p <0.01). Significant improvements were noted among the major radiation dose determinants, total fluoroscopy time (reduced by 67%), dose rate setting (appropriately reduced dose setting in 93% vs 51%) and excess skin-to-intensifier distance (reduced by 78%, each p <0.01).
Conclusions:
After systematic evaluation of our practices and implementation of a fluoroscopy quality checklist, there were dramatic decreases in radiation doses to children during ureteroscopy.
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