PET and SPECT studies in children with hemispheric low-grade gliomas.

Csaba Juhász, Edit Bosnyák

Journal: Child's nervous system : ChNS : official journal of the International Society for Pediatric Neurosurgery 2017;32(10):1823-32

PMID: 27659825

Abstract

Molecular imaging is playing an increasing role in the pretreatment evaluation of low-grade gliomas. While glucose positron emission tomography (PET) can be helpful to differentiate low-grade from high-grade tumors, PET imaging with amino acid radiotracers has several advantages, such as better differentiation between tumors and non-tumorous lesions, optimized biopsy targeting, and improved detection of tumor recurrence. This review provides a brief overview of single-photon emission computed tomography (SPECT) studies followed by a more detailed review of the clinical applications of glucose and amino acid PET imaging in low-grade hemispheric gliomas. We discuss key differences in the performance of the most commonly utilized PET radiotracers and highlight the advantage of PET/MRI fusion to obtain optimal information about tumor extent, heterogeneity, and metabolism. Recent data also suggest that simultaneous acquisition of PET/MR images and the combination of advanced MRI techniques with quantitative PET can further improve the pretreatment and post-treatment evaluation of pediatric brain tumors.

Address: Departments of Pediatrics, Wayne State University, Detroit, MI, USA. [email protected].; Departments of Neurology, Wayne State University, Detroit, MI, USA. [email protected].; PET Center and Translational Imaging Laboratory, Children's Hospital of Michigan, Wayne State University School of Medicine, 3901 Beaubien Street, Detroit, MI, 48201, USA. [email protected].; Karmanos Cancer Institute, Detroit, MI, USA. [email protected].; Departments of Pediatrics, Wayne State University, Detroit, MI, USA.; PET Center and Translational Imaging Laboratory, Children's Hospital of Michigan, Wayne State University School of Medicine, 3901 Beaubien Street, Detroit, MI, 48201, USA.
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