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Updated: Jul 3, 2026

Radiotracer Administration for High Temporal Resolution Positron Emission Tomography of the Human Brain: Application to FDG-fPET
Published on: October 22, 2019
Beyond FDG PET in Epilepsy: Radiotracers Targeting Neuroreceptors and Neural Proteins
Nur Dizdar1, Neetu Soni2, Derek R Johnson2
1From the Department of Radiology (N.D., D.R.J., A.T.K., S.A.M., V.L., B.J.B.), Mayo Clinic, Rochester, MN, USA and Department of Radiology (N.S.), Division of Neuroradiology, Mayo Clinic, Jacksonville, FL, USA. dizdar.nur@mayo.edu.
Abstract:
Epilepsy, a prevalent neurological disorder worldwide, requires precise identification of the epileptogenic zone (EZ) to achieve optimal therapeutic outcomes, particularly in patients with drug-resistant epilepsy. Advanced neuroimaging plays a pivotal role in the presurgical evaluation of these patients. While [18F]fluorodeoxyglucose (FDG) remains the most widely utilized PET radiotracer in clinical practice, non-FDG radiotracers offer complementary molecular and neurochemical insights that extend beyond glucose metabolism. By targeting specific receptors, transporters, synaptic density, and neuroinflammatory processes, these tracers may improve the localization and biological characterization of the EZ. Although non-FDG PET radiotracers are still used predominantly in the research setting, ongoing advances in radiotracer development could further increase their clinical applicability in the evaluation of epilepsy. This review provides a comprehensive overview of currently available non-FDG PET radiotracers and summarizes their pathophysiological significance and promising clinical applications in epilepsy.
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