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Updated: Jul 27, 2025

X-ray Dose Reduction through Adaptive Exposure in Fluoroscopic Imaging
Published on: September 11, 2011
The burden of radiation exposure in children requiring percutaneous nephrolithotomy
Kiarash Taghavi1, Amanda Kusel2, Nathalie Webb3
1Department of Paediatric Urology, Monash Children's Hospital, Monash Health, Melbourne, Australia; Department of Paediatrics, Monash University, Melbourne, Australia.
Insights
Pediatric patients with complex kidney stones receive significant radiation exposure from imaging, particularly fluoroscopy. Strategies are needed to minimize this exposure during urolithiasis management.
Area of Science:
- Pediatric Urology
- Medical Imaging
- Radiation Oncology
Background:
- Children with complex upper tract urolithiasis require multimodal imaging for diagnosis and management.
- The cumulative radiation exposure from imaging in pediatric stone care pathways is not well-documented.
Purpose of the Study:
- To analyze imaging modalities and radiation exposure in pediatric patients undergoing percutaneous nephrolithotomy for complex upper tract urolithiasis.
- To quantify the cumulative effective dose and organ dose from various imaging techniques.
Main Methods:
- Retrospective analysis of medical records from pediatric patients undergoing percutaneous nephrolithotomy.
- Calculation of radiation dose using simulation and a priori methods.
- Assessment of cumulative effective dose (mSv) and organ dose (mGy) for radiosensitive organs.
Main Results:
- 140 imaging studies from 15 children with a median follow-up of 9.6 years were analyzed.
- Patients underwent an average of nine imaging studies, with a cumulative effective dose of 18.3 mSv.
- Computed tomography (CT) had the highest effective dose per study (4.09 mSv), followed by fixed (2.79 mSv) and mobile fluoroscopy (1.82 mSv).
Conclusions:
- While CT radiation is recognized, the significant exposure from fluoroscopy in pediatric urolithiasis is underestimated.
- Pediatric urologists should implement strategies to minimize radiation exposure, optimizing modality use and avoiding unnecessary procedures.
- Minimizing radiation exposure is crucial for children undergoing management for complex upper tract urolithiasis.
Background:
Children undergoing investigation and management for complex upper tract urolithiasis often require multimodal imaging. The significance of related radiation exposure in stone care pathways has received little attention in the published literature.
Study Design:
Medical records of paediatric patients undergoing percutaneous nephrolithotomy were retrospectively analysed to ascertain the modalities used and determine extent of radiation exposure occurring during each care pathway. Radiation dose simulation and calculation was performed a priori. The cumulative effective dose (mSv) and cumulative organ dose (mGy) for radiosensitive organs was calculated.
Results:
A total of 140 imaging studies were included from the care pathways of 15 children with complex upper tract urolithiasis. Median follow-up was 9.6 years (range: 6.7-16.8 years). The average number of imaging studies with ionising radiation per patient was nine, with a cumulative effective dose of 18.3 mSv across all modalities. The most common modalities were: mobile fluoroscopy (43%), x-ray (24%), and computed tomography (18%). The cumulative effective dose per study type was greatest for CT (4.09 mSv), followed by fixed and mobile fluoroscopy (2.79 mSv and 1.82 mSv, respectively).
Conclusion:
There is high general awareness of radiation exposure involved in CT scanning with resultant caution in employing this modality in paediatric patients. However, the significant radiation exposure relating to fluoroscopy (whether fixed or mobile) is less well documented in children. We recommend implementing steps to minimise radiation exposure by optimisation and avoidance of certain modalities where possible. Paediatrics urologists must employ strategies to minimise radiation exposure in children with urolithiasis, given the significant exposures encountered.
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