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Sonographic Features of Juvenile Fibroadenoma in Children-a Retrospective Study
Jian Shi1, Luzeng Chen1, Jingming Ye2
1Department of Ultrasound, Peking University First Hospital, Beijing 100034, China
Insights
Juvenile fibroadenomas in children typically appear as oval, encapsulated masses with blood flow. Low-frequency ultrasound is recommended for masses over 5 cm, as posterior shadowing is absent.
Area of Science:
- Pediatric Radiology
- Breast Imaging
- Oncology
Background:
- Juvenile fibroadenomas are benign breast tumors common in adolescents.
- Limited research exists on the specific sonographic characteristics of juvenile fibroadenomas in pediatric patients.
Purpose of the Study:
- To analyze the sonographic features of juvenile fibroadenomas in children.
- To establish imaging criteria for differentiating juvenile fibroadenomas in pediatric breast masses.
Main Methods:
- Retrospective analysis of demographic data, clinical findings, and breast ultrasounds of 24 girls (aged 10-18) with pathologically proven juvenile fibroadenomas.
- Comparison of sonographic features between puberty and post-puberty subgroups.
Main Results:
- 27 masses (average diameter 5.8 cm) were identified, predominantly oval, encapsulated, with circumscribed margins and parallel orientation.
- All masses showed internal hypoechogenicity; posterior acoustic shadowing was absent, with enhancement noted using low-frequency transducers.
- Blood flow was detected in 88.9% of masses; no significant differences were found between puberty subgroups.
Conclusions:
- Juvenile fibroadenomas in children are typically oval, encapsulated masses with internal hypoechogenicity and detectable blood flow.
- Absence of posterior acoustic shadowing is a key feature, with posterior acoustic enhancement observed using low-frequency transducers.
- Screening with low-frequency transducers is suggested for masses > 5 cm for optimal characterization.
Aims:
Studies specifically examining the sonographic features of juvenile fibroadenoma in the pediatric population have not been documented. We aimed to analyze sonograms of juvenile fibroadenoma in children.
Subjects And Methods:
Patients aged ≤ 18 years who underwent breast ultrasound examinations at our department and had pathologically proven juvenile fibroadenoma from September 2002 to January 2022 were included in this study. Demographic data, clinical findings, and sonograms were retrospectively analyzed. Patients were further divided into the puberty and post-puberty subgroups, and their results were compared.
Results:
A total of 24 girls aged 10-18 years with 27 masses diagnosed as juvenile fibroadenomas were identified. The diameter of the masses averaged 5.8 ± 3.3 cm, with a range of 1.5-13.6 cm. Twenty-one (87.5%) patients had a single mass and 3 had double lesions. Over 80% of the lesions were oval-shaped and encapsulated with circumscribed margins and parallel orientation. All masses showed internal hypoechogenicity, either uniform or heterogeneous. For masses that had a diameter > 5 cm, screening with high-frequency transducers revealed no posterior acoustic features or posterior shadowing. However, these features changed to posterior acoustic enhancement when the masses were re-evaluated using low-frequency transducers. Ultrasonic color Doppler showed blood flow in 24 (88.9%) masses. There were no significant differences in the incidence and sonographic features between the two subgroups.
Conclusion:
Most juvenile fibroadenomas in children are oval, circumscribed, encapsulated masses with detectable blood flow. All juvenile fibroadenomas presented in this study exhibit internal hypoechogenicity with no posterior acoustic shadowing detected in any cases. Our findings suggest that screening with low-frequency transducers should be performed for a mass that has a diameter > 5 cm.
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