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Related Concept Videos

Brain Imaging01:14

Brain Imaging

295
Brain imaging technologies provide critical insights into both the structure and function of the human brain, enabling medical professionals and researchers to diagnose, study, and treat neurological disorders or psychiatric disorders more effectively.
These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans),  magnetic resonance imaging (MRI),  functional magnetic resonance imaging (fMRI), and Transcranial Magnetic...
295
Imaging Studies II: Positron Emission Tomography and Scintigraphy01:25

Imaging Studies II: Positron Emission Tomography and Scintigraphy

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Positron Emission Tomography (PET) is a medical imaging technique that provides crucial insights into the body's physiological functions at a molecular level. It is an indispensable resource for diagnosing, staging, and monitoring various illnesses, notably cancer, neurological disorders, and cardiovascular conditions.
Fundamental Principles of PET
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Imaging in neuroblastoma.

Annemieke S Littooij1, Bart de Keizer2

  • 1Department of Radiology and Nuclear Medicine, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, The Netherlands. A.S.Littooij-2@umcutrecht.nl.

Pediatric Radiology
|September 5, 2022
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Summary

Neuroblastoma, a common childhood cancer, has a variable prognosis. This review highlights the vital role of imaging in managing neuroblastoma treatment.

Keywords:
ChildrenImagingMagnetic resonance imagingNeuroblastomaNuclear medicine

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Area of Science:

  • Pediatric Oncology
  • Medical Imaging
  • Cancer Biology

Background:

  • Neuroblastoma is the most frequent extracranial solid tumor in children.
  • Prognosis varies significantly, from spontaneous resolution to fatal outcomes in high-risk cases.
  • Effective management necessitates a deep understanding of disease behavior and treatment response.

Approach:

  • This paper offers a comprehensive review of imaging modalities.
  • It details the application of imaging throughout the neuroblastoma treatment journey.
  • Emphasis is placed on how imaging guides therapeutic decisions and monitors progress.

Key Points:

  • Imaging is crucial for initial diagnosis, staging, and risk stratification.
  • Serial imaging assesses treatment efficacy and detects disease recurrence.
  • Advanced imaging techniques improve diagnostic accuracy and treatment planning.

Conclusions:

  • Optimized imaging strategies are essential for improving neuroblastoma patient outcomes.
  • Multimodality imaging plays a pivotal role in the multidisciplinary care of neuroblastoma.
  • Continuous evaluation of imaging's role is needed to adapt to evolving treatment paradigms.