Related Experiment Video
Updated: May 25, 2025

Establishment of Cancer Stem Cell Cultures from Human Conventional Osteosarcoma
Published on: October 14, 2016
Atypical Pelvic Tumors in Children
Paulina Sobieraj1, Monika Bekiesińska-Figatowska1
1Department of Diagnostic Imaging, Institute of Mother and Child, 01-211 Warsaw, Poland.
Insights
This study reviews atypical pediatric pelvic tumors, highlighting key magnetic resonance imaging (MRI) features for diagnosis. Integrating imaging with clinical data is crucial for accurate diagnosis and treatment of these rare pediatric tumors.
Area of Science:
- Pediatric Radiology
- Oncology
- Medical Imaging
Background:
- The pelvis harbors diverse tumors, some with characteristic MRI findings like sacrococcygeal teratoma (SCT) and ovarian teratoma.
- Common pelvic tumors in children include rhabdomyosarcoma (RMS) and Ewing sarcoma (ES).
- Atypical pelvic tumors present diagnostic challenges, necessitating detailed radiological evaluation.
Purpose of the Study:
- To present selected atypical pelvic tumors in children.
- To identify radiological features aiding in the diagnosis of these tumors.
- To emphasize the importance of integrating imaging with clinical and laboratory data.
Main Methods:
- Review of literature on pediatric pelvic tumors.
- Presentation of case studies of atypical pelvic tumors.
- Analysis of magnetic resonance imaging (MRI) features.
Main Results:
- Discussion of reproductive system tumors: cervical cancer, ovarian small cell neuroendocrine carcinoma, ovarian ES/PNET, ovarian DLBCL, and ovarian SLCT with RMS.
- Inclusion of nervous system tumors: neuroblastoma (NBL) and plexiform neurofibroma (pNF), with and without NF1.
- Presentation of Rosai-Dorfman disease involving pelvic and inguinal lymph nodes.
Conclusions:
- Radiological features can assist in diagnosing individual pelvic tumors.
- Accurate diagnosis requires a comprehensive approach, combining MRI with clinical information, comorbidities, and lab results.
- This study aims to improve diagnostic accuracy for rare pediatric pelvic tumors.
Abstract:
Due to the complex anatomy of the pelvis, various tumors may arise in this region. Some of these tumors are well known and have distinctive features that allow them to be identified by magnetic resonance imaging (MRI). These include sacrococcygeal teratoma (SCT), the most prevalent congenital tumor in children, often diagnosed prenatally and most frequently occurring in this anatomical location, and ovarian teratoma, which in its mature form is the most common ovarian neoplasm in children and adolescents. Additionally, rhabdomyosarcoma (RMS), commonly found in the bladder in both genders and in the prostate in males, and Ewing sarcoma (ES), affecting the flat bones of the pelvis, are relatively common tumors. In this study, selected atypical pelvic tumors in children are presented. Most of them are tumors of the reproductive system, such as cervical cancer, small cell neuroendocrine carcinoma of the ovary, ES/primitive neuroectodermal tumor (PNET) of the ovary, diffuse large B-cell lymphoma (DLBCL) of the ovaries and ovarian Sertoli-Leydig cell tumor (SLCT) with RMS due to DICER1 syndrome. Additionally, tumors originating from the nervous system, including neuroblastoma (NBL) and plexiform neurofibroma (pNF), associated and not associated with neurofibromatosis type 1 (NF1), are discussed. Furthermore, Rosai-Dorfman disease involving the pelvic and inguinal lymph nodes is presented. By reviewing the literature and presenting our cases, we tried to find radiological features of individual tumors that would bring the radiologist closer to the correct diagnosis, ensuring the implementation of appropriate treatment. However, the MR images cannot be considered in isolation. Additional patient data, such as the clinical picture, comorbidities/syndromes, and laboratory test results, are necessary.
More Related Videos
08:43An Orthotopic Bladder Tumor Model and the Evaluation of Intravesical saRNA Treatment
Published on: July 28, 2012
07:50Utilization of Ultrasound Guided Tissue-directed Cellular Implantation for the Establishment of Biologically Relevant Metastatic Tumor Xenografts
Published on: May 25, 2018