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Whole-body PET/MRI of Pediatric Patients: The Details That Matter
Published on: December 19, 2017
Imaging Approaches to Surveillance in Children With Cancer Predisposition Syndromes, From the AJR Special Series on
Melissa Perrino1, Soniya Pinto2, Nisha Pande3
1Department of Oncology, St. Jude Children's Research Hospital, Memphis, TN.
Insights
Pediatric cancer predisposition syndromes (CPS) require tailored surveillance. Imaging is key for early detection, but protocols must balance benefits against risks like radiation and anesthesia exposure.
Area of Science:
- Pediatric Oncology
- Medical Imaging
- Genetics
Background:
- Over 100 pediatric cancer predisposition syndromes (CPS) are known, increasing cancer risk and sometimes causing other health issues.
- Early cancer detection through surveillance in at-risk children improves outcomes.
- Imaging plays a crucial role in cancer surveillance protocols for pediatric CPS.
Purpose of the Study:
- To review imaging modalities used in pediatric cancer surveillance.
- To assess the relationship between imaging attributes and surveillance practices for common pediatric CPS.
- To highlight radiological concepts for current recommendations using case examples.
Main Methods:
- Literature review focusing on common and penetrant pediatric CPS.
- Critical assessment of imaging modality attributes in relation to surveillance needs.
- Illustrative case examples to demonstrate radiological principles.
Main Results:
- Imaging selection depends on the specific CPS, expected tumor onset age, and modality characteristics.
- Lifelong surveillance requires consideration of cumulative toxicities (anesthesia, radiation) and costs.
- Advances in imaging and non-imaging surveillance (e.g., circulating DNA) are rapidly evolving the field.
Conclusions:
- Optimizing pediatric cancer surveillance involves careful selection of imaging modalities.
- Balancing early detection with cumulative toxicity and cost is essential for long-term management.
- The field of pediatric CPS surveillance is dynamic, driven by technological and genetic advancements.
Abstract:
Over 100 pediatric cancer predisposition syndromes (CPS) are now recognized, each conferring unique risks for cancer and, at times, nononcologic manifestations. Identification of children at increased genetic risk for cancer can optimize outcomes by informing clinical care, including the institution of cancer surveillance to identify tumors at their earliest and most treatable stages. Within surveillance regimens, imaging maintains a prominent role among testing methods. The large menu of available imaging tests provides ample options for detecting incipient tumors. The imaging examination performed depends on the underlying predisposition syndrome, expected age of tumor occurrence, and attributes of the modality. As surveillance for many CPS includes lifelong repeated imaging, surveillance protocols must consider cumulative toxicities, including anesthesia and radiation exposure, as well as potential economic burdens. This review explores imaging modalities used for pediatric cancer surveillance, critically assessing the association between modality-specific attributes and pediatric cancer surveillance practices. The article focuses on the most common and penetrant CPS in childhood and provides illustrative cases to show the radiologic concepts underpinning the current recommendations. Rapid advances in imaging techniques, further recognition of genotype-phenotype associations within CPS, and the emergence of nonimaging surveillance possibilities, including circulating DNA, make the space of surveillance for pediatric CPS an ever-changing field.
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