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Published on: January 7, 2019
Ureteroscopy in children: is there a need for ureteral dilation and postoperative stenting?
C D Anthony Herndon1, Louis Viamonte, David B Joseph
1Section of Pediatric Urology, Division of Urology, Department of Surgery, University of Alabama at Birmingham, USA. anthony.herndon@ccc.uab.edu
Insights
Pediatric ureteroscopy for stones is safe and effective, even without ureteral dilation or postoperative stenting. This minimally invasive approach offers a low re-treatment rate for children with ureteral stones.
Area of Science:
- Pediatric Urology
- Minimally Invasive Surgery
- Nephrology
Background:
- Ureteroscopic stone manipulation and extraction is standard for adult distal ureteral stones.
- Recent advancements allow pediatric application of ureteroscopy.
- This study examines ureteral dilation and stenting in pediatric ureteroscopy.
Purpose of the Study:
- To evaluate the necessity of ureteral dilation during pediatric ureteroscopy.
- To determine the requirement for postoperative stenting after pediatric ureteroscopy.
- To assess the safety and efficacy of ureteroscopy in children with ureteral stones.
Main Methods:
- 34 ureteroscopic procedures were performed on 29 children (mean age 11.0 years) for ureteral stones.
- Semi-rigid ureteroscopes (4.5-F or 6.5-F) were used without active ureteral dilation.
- Postoperative stents were used selectively based on complications or planned interventions.
Main Results:
- No active ureteral dilation was required in any procedure.
- The overall re-treatment rate for stone disease was 4%.
- Procedures managed without postoperative stenting required no subsequent intervention.
Conclusions:
- Ureteroscopy is a safe and effective treatment for pediatric ureteral stones.
- Instrumentation advancements enable its use in children.
- Ureteroscopy, including laser lithotripsy, can be performed without ureteral dilation or postoperative stenting.
Introduction:
Ureteroscopic stone manipulation and extraction is the standard of care for distal stone disease in the adult population. Recently, with refinements in instrumentation, these standards have been applied in pediatrics. Here, we investigate the role of ureteral dilation and the need for postoperative stenting after ureteroscopy.
Materials And Methods:
Twenty-nine children (21 male, eight female) with a mean age of 11.0 (2.5-17.5) years underwent 34 ureterscopic procedures (21 right, 13 left) to address ureteral stones in 27 (23 distal, 3 mid and 1 proximal), surveillance of the upper tract in six and a retained stent in one. Active ureteral dilation was not required in any of these patients. A Wolfe 4.5-F or 6.5-F tapered semi-rigid ureterescope was passed alongside a previously placed guidewire to access the upper collecting system. Proximal ureteral surveillance was performed after completion of the procedure; all but two patients had a diagnostic ureterogram. Four patients had preoperative placement of a JJ stent. Postoperative stents were placed in six patients, two had stents placed preoperatively for infection associated with either autonomic dysreflexia or stone impaction, two for extravasation or perforation, one for edema and one for subsequent ESWL.
Results:
Mean follow up after ureteroscopy was 16.2 (0.3-48) months. Of the 27 procedures for stone disease, 15 (55%) stones required laser litholipaxy and 12 (45%) were managed with stone basket extraction. The overall re-treatment rate for stone disease was 4%. Diagnostic ureteroscopy was normal in six procedures. None of the procedures managed without a post-ureteroscopy stent required subsequent intervention.
Conclusion:
Ureteroscopy is a safe, effective method to manage ureteral stones. Refinements in instrumentation allow its application to the pediatric population. Ureteroscopy including laser lithotripsy can be performed without ureteral dilation or postoperative stenting.
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