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Identification and characterization of calyceal diverticula with MR urography (MRU) in children
Juan S Calle-Toro1, Susan J Back1,2, Carolina Maya1
1Department of Radiology, Children's Hospital of Philadelphia, 3401 Civic Blvd, Philadelphia, PA, 19104, USA.
Insights
Magnetic resonance urography (MRU) reliably distinguishes calyceal diverticula from renal cysts in children. All identified diverticula filled with contrast within 15 minutes, indicating prompt imaging is sufficient.
Area of Science:
- Pediatric Radiology
- Uroradiology
- Medical Imaging
Background:
- Calyceal diverticula (CD) are congenital anomalies of the kidney.
- Differentiating CD from simple renal cysts is crucial for appropriate management.
- Magnetic resonance urography (MRU) is a non-invasive imaging modality used in pediatric urology.
Purpose of the Study:
- To define the MRU imaging characteristics of calyceal diverticula in a pediatric cohort.
- To compare the observed frequency of CD with previously reported data.
- To assess the diagnostic accuracy of MRU in differentiating CD from renal cysts.
Main Methods:
- Retrospective review of MRU examinations performed between 2010 and 2017 for suspected CD.
- Two pediatric radiologists independently assessed MRU for presence, size, location, morphology, and contrast filling of cystic masses.
- Statistical analysis, including a chi-squared test, was used to compare characteristics and determine significance.
Main Results:
- Of 66 cystic masses in 50 children, 21 (31.8%) were identified as CD, with a frequency of 26.6 per 1000 patients.
- The median diameter of CD was 2.5 cm, and contrast filling was observed within 15 minutes in all cases.
- MRU demonstrated 100% diagnostic accuracy in surgically confirmed cases (18 CD, 6 cysts).
Conclusions:
- MRU is a reliable imaging technique for differentiating pediatric calyceal diverticula from renal cysts.
- Contrast enhancement within 15 minutes of administration is characteristic of calyceal diverticula on MRU.
- Delayed imaging beyond 15 minutes is unnecessary for diagnosing calyceal diverticula via MRU.
Purpose:
To determine the MRU imaging findings of calyceal diverticula in a large cohort of children and to compare the frequency of calyceal diverticula in our cohort with what has been previously reported.
Methods:
This was a HIPAA-compliant, IRB-approved retrospective study of all patients with suspected CD based on their medical records. All patients in this study underwent MRU at our institution between 2010 and 2017. Two pediatric radiologists reviewed each MRU blinded to clinical information and other urologic imaging regarding the presence, size, location, and morphology of the cyst and presence/absence of contrast within it. The time when contrast first appeared within the cystic mass was recorded, and a χ2 test was used to determine significance on differences between the different characteristics of renal cysts and diverticula.
Results:
Fifty children (29 girls and 21 boys; median age of 11.5 years, IQR 7-16) with a total of 66 individual cystic masses were included. 21 (21/66, 31.8%) Cystic masses demonstrated contrast filling and were characterized as diverticula, resulting in a frequency of 26.6 cases per 1000 patients (21/787). The remaining 45 cystic masses (45/66, 68.1%) were cysts. The median diameter of CD was 2.5 cm (IQR 1.5-3.7). Contrast was observed within the cystic mass on average at 4.6 min (SD ± 2.4; range 1.5-13 min). The agreement between both radiologists was 91% (k = 0.78). 6 Cysts and 18 CD were confirmed surgically, MRU demonstrated accurate diagnosis in 100% of those cases.
Conclusion:
Magnetic resonance urography is reliable in differentiating calyceal diverticula from renal cysts. On MRU, all diverticula were identified within 15 min of contrast administration; hence longer delays in imaging are unnecessary.
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