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Kidney stone size and hounsfield units predict successful shockwave lithotripsy in children
Ahmed El-Assmy1, Ahmed R El-Nahas, Mohamed E Abou-El-Ghar
1Department of Urology, Urology and Nephrology Center, Mansoura University, Mansoura, Egypt. a_assmy@yahoo.com
Insights
Extracorporeal shockwave lithotripsy (SWL) success in children depends on stone characteristics. Stones with attenuation ≤600 Hounsfield units (HU) and length ≤12 mm are more likely to be successfully treated with SWL.
Area of Science:
- Pediatric Urology
- Nephrolithiasis Management
- Medical Imaging
Background:
- Pediatric renal calculi treatment often involves extracorporeal shockwave lithotripsy (SWL).
- Predicting SWL success in children is crucial for effective treatment planning.
- Noncontrast-enhanced computed tomography (NECT) is a standard imaging modality for stone evaluation.
Purpose of the Study:
- To identify preoperative kidney and stone characteristics on NECT that predict SWL success in pediatric patients.
- To define imaging parameters for optimizing SWL outcomes in children with renal stones.
Main Methods:
- Retrospective analysis of 57 children (<16 years) treated with SWL between 2005-2011.
- NECT scans were evaluated for stone size, site, multiplicity, skin-to-stone distance, attenuation (HU), and kidney morphology.
- Success defined as radiographically stone-free status at 3-month follow-up after a single SWL session without ancillary procedures.
Main Results:
- SWL success (stone-free) was achieved in 42.1% of children after a single session.
- Logistic regression identified stone attenuation (HU) and stone length as significant predictors of SWL success.
- Success rates were 82.1% for stones ≤600 HU vs. 20% for >600 HU (P=.023).
- Success rates were 58.6% for stones ≤12 mm vs. 25.1% for >12 mm (P=.016).
Conclusions:
- Preoperative stone attenuation ≤600 HU is a significant predictor of SWL success in children.
- Preoperative stone length ≤12 mm is another significant independent predictor of SWL success in pediatric patients.
- These imaging parameters can aid in selecting appropriate candidates for SWL and managing expectations.
Objective:
To define the preoperative kidney and stones characteristics on noncontrast-enhanced computed tomography that affect the success of extracorporeal shockwave lithotripsy (SWL) for treatment of renal calculi in pediatric patients.
Materials And Methods:
From 2005 to 2011, 57 children (age <16 years) with documented preoperative noncontrast-enhanced computed tomography scans underwent SWL for treatment of renal stones and were included in the present study. Stone size, site, multiplicity, average skin-to-stone distance, stone attenuation value, and kidney morphology were determined from the preoperative noncontrast-enhanced computed tomography scans. Success was defined as radiographically stone-free status at the 3-month follow-up examination after a single lithotripsy session without the need for additional sessions or ancillary procedures.
Results:
After a single session of SWL, 24 children (42.1%) were stone free on the 3-month follow-up imaging study without the need for additional SWL sessions. Treatment failed in 33 patients (57.9), with residual fragments in 30 children, of whom 29 required repeat SWL, and 3 with stones that were considered unchanged and were finally treated with percutaneous nephrolithotomy. Logistic regression analysis revealed that stone attenuation in Hounsfield units (HU) and stone length were the only significant predictors of success. When the HU were stratified into 2 groups of ≤600 and >600 HU, the SWL success rate was 82.1% and 20%, respectively (P = .023). When length was stratified as ≤12 mm and >12 mm, the stone-free rate was 58.6% and 25.1%, respectively (P = .016).
Conclusion:
Stone attenuation ≤600 HU and stone length ≤12 mm were significant independent predictors of SWL success in children.
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