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Factors that affect outcome of pediatric shock waves lithotripsy with sedoanalgesia
Ammar Fadil Abid1, Nassser S Hussein1, Bairq A Mahdi1
1Department of Urology, Medical College, Al Yarmouk Hospital, Al-Mustansiriyah University, Baghdad, Iraq.
Insights
Pediatric shock wave lithotripsy (SWL) is effective for treating kidney and ureteric stones in children. Success depends on age, stone location, and treatment sessions, not stone size or opacity.
Area of Science:
- Pediatric Urology
- Nephrology
- Anesthesiology
Background:
- Shock wave lithotripsy (SWL) is a key treatment for pediatric urolithiasis.
- Predicting SWL effectiveness is crucial for optimal patient management.
- Intravenous sedoanalgesia is an option for pediatric SWL procedures.
Purpose of the Study:
- To evaluate the effectiveness of SWL in children with renal and ureteric stones.
- To identify factors influencing stone-free rates after SWL in pediatric patients.
- To assess the feasibility and safety of SWL under intravenous sedoanalgesia.
Main Methods:
- Retrospective study of 47 children (aged 1-16 years) undergoing SWL.
- Procedures performed under intravenous sedoanalgesia (diazepam and ketamine).
- Analysis of factors including age, stone site, size, opacity, pelvicalyceal dilation, prior surgery, shock wave number, and sessions.
Main Results:
- Overall, 76.6% of children achieved stone-free status.
- Significant factors for stone clearance included younger age (<6 years), pelvic stones, no prior surgery, and more shock waves/sessions.
- Stone size, opacity, and calyceal dilation were not significant predictors of success.
Conclusions:
- Pediatric SWL under intravenous sedoanalgesia is a feasible and safe treatment option.
- Key predictors of successful stone clearance are patient age, stone location, and treatment intensity.
- General anesthesia is not always necessary for pediatric SWL.
Introduction:
Performing shock wave lithotripsy (SWL) under intravenous sedoanalgesia and the ability to predict the effectiveness of SWL is essential in determining the most appropriate treatment for patients.
Patients And Methods:
This study consisted of 56 children aged between 1 and 16 years mean age 6.7 ± 4.3 years with renal and ureteric stones who underwent SWL. Incomplete child data were excluded from the study, leaving 47 patients. The procedure was performed under sedoanalgesia with diazepam and ketamine was given intravenously during SWL session. We study the effect of the following factors (age, site, size, opacity of stone, degree of pelvicalyceal dilation, previous urological surgery, number of shock waves, and number of sessions) on stone clearance after SWL.
Results:
Forty-seven children range from 1 to 16 years, mean age 6.7 ± 4.3 years. There were 39 (83%) with renal stone and 8 (17%) with ureteric stone. The mean size of stone was 12.2 ± 4.4 mm ranging 6-25 mm. Of 47 children, 36 (76.6%) were stone-free. Age below 6 years, pelvic stones, children without surgery, number of shock waves, and number of sessions were significant factors that affect the stone-free rate after SWL, while the stone size, opacity, and calyceal system dilatation were not statistically significant factors.
Conclusions:
The present analysis shows that stone-free status for children with urolithiasis depends on the age of presentation, previous history of ipsilateral stone treatment, stone location, and number of sessions. Pediatric lithotripsy under intravenous sedoanalgesia is feasible, general anesthesia is not mandatory, and any anesthetic complications were not encountered.
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