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Ultrasonography-Based Prediction of the Need for Surgical Intervention in Pediatric Intussusception
İbrahim Halil Akkış1, Sinan Seyrek1, Selahattin Durmaz2
1Department of Radiology, Istanbul Faculty of Medicine, Istanbul University.
Insights
Ultrasonography can predict surgery for pediatric intussusception. Measuring the invaginated segment length helps determine if a child needs surgery, guiding treatment decisions.
Area of Science:
- Pediatric Gastroenterology
- Medical Imaging
- Surgical Prediction
Background:
- Intussusception is a leading cause of acute intestinal obstruction in children.
- While many cases resolve non-surgically, some necessitate surgical intervention.
- Predicting surgical need aids in timely and appropriate management.
Purpose of the Study:
- To identify ultrasonographic features predicting surgical intervention in pediatric intussusception.
- To evaluate the diagnostic performance of segment length measurement.
Main Methods:
- Retrospective review of 101 pediatric intussusception cases (2020-2023).
- Analysis of demographic data and ultrasound features, including segment length.
- Statistical analysis using logistic regression and ROC curves to determine predictive values.
Main Results:
- A significantly greater invaginated segment length was observed in the surgical group (median 55 mm) compared to the nonsurgical group (median 25 mm).
- A 30-mm cutoff showed 100% sensitivity and 53% specificity (AUC 0.80) for predicting surgery.
- A 91-mm cutoff achieved 100% specificity but only 28% sensitivity.
Conclusions:
- Ultrasonographic measurement of invaginated segment length is a valuable noninvasive predictor of surgical necessity in pediatric intussusception.
- A dual-threshold approach using segment length can assist in guiding conservative versus surgical management decisions.
Objectives:
Intussusception is a major cause of acute intestinal obstruction in children. While most cases resolve with nonsurgical methods, some require surgical intervention. This study aimed to evaluate ultrasonographic features that may predict the need for surgery in pediatric intussusception.
Methods:
Medical records of patients under 18 years diagnosed with intussusception between January 2020 and June 2023 at a tertiary hospital were retrospectively reviewed. Patients were categorized into surgical and nonsurgical groups. Ultrasound examinations were performed by staff radiologists at our hospital with patients in the supine position using high-frequency linear probes. Demographic data and imaging features (segment length, type) were recorded. Data were analyzed in Python 3.10 using χ2 tests, ROC analysis, and multivariable logistic regression (statsmodels, no regularization). ORs with 95% CIs were obtained, the optimal cutoff was determined by the Youden index, and bootstrap resampling was used to account for the limited number of surgical events.
Results:
A total of 101 patients (53 males, 48 females; median age, 2.5 years (range, 0.5-15 years)) were included. Ileocolic intussusception was the most common type (n=60, 59.4%). Overall, 18 patients (17.8%) required surgical intervention, while 83 (82.2%) were managed nonsurgically. When stratified by type, surgical intervention was required in 21% (13/60; 95% CI, 11%-30%) of ileocolic intussusceptions and 12% (5/41; 95% CI, 5.3%-25.5%) of small-bowel intussusceptions. The median length of the intussuscepted segment was significantly greater in the surgical group [55 mm (IQR, 32.5 to 90)] than in the nonsurgical group [25 mm (IQR, 15 to 40); P < 0.001]. A 30-mm cutoff yielded 100% sensitivity and 53% specificity (AUC, 0.80), whereas a 91-mm cutoff achieved 100% specificity with 28% sensitivity.
Conclusion:
Ultrasonographic measurement of the invaginated segment length is a valuable noninvasive predictor of surgical necessity in pediatric intussusception. A dual-threshold approach may help guide conservative versus surgical management.
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