Fdg Tracer Administration

FDG tracer administration is the controlled delivery of fluorodeoxyglucose, a radiolabeled glucose analog, for measuring tissue glucose metabolism, particularly in the brain. After intravenous injection, FDG crosses the blood-brain barrier and enters cells through glucose transporters; hexokinase phosphorylates it, but subsequent metabolism is limited, causing the tracer to accumulate in proportion to glucose utilization during the uptake period. Positron emission tomography (PET) then detects the emitted radiation to map regional cerebral metabolic activity. In neuroscience, this approach supports studies of neural function, brain networks, neurodegenerative disease, epilepsy, and treatment-related metabolic changes.

Fdg Tracer Administration - Related Videos

Research

JoVE EoE - Neurotherapeutics

Assessing Metabolic Neuromodulation Induced by Acute Deep Brain Stimulation in Rats Using In Vivo FDG-PET

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2025

Source: Casquero-Veiga, M. et al. In vivo Positron Emission Tomography to Reveal Activity Patterns Induced by Deep Brain Stimulation in Rats. J. Vis. Exp. (2022).This video demonstrates the metabolic effects of deep brain stimulation (DBS) using FDG-PET imaging in a rat model. It outlines the steps involved in FDG administration, DBS application, and PET/CT imaging to map brain regions with increased or suppressed metabolic activity.

FDG Based PET/CT Scan: A Method of Using Radiotracer for Non-invasive Imaging of Tumor Metabolism

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2023

This article describes multimodality imaging of cancerous tissues with PET and CT diagnostic imaging by using a radiotracer 18F-FDG. Cancerous tissue with high glycolytic activity uptakes more 18F-FDG.

Semi-quantitative Assessment Using [18F]FDG Tracer in Patients with Severe Brain Injury

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Cited by 7 •

2018

[18F]-fluorodeoxyglucose (FDG) positron emission tomography-computed tomography is useful for studying glucose metabolism related to brain function. Here, we present a protocol for an [18F]FDG tracer set-up and semiquantitative assessment of the region-of-interest analysis for targeted brain areas associated with clinical manifestations in patients with severe traumatic brain injury.

A Dual Tracer PET-MRI Protocol for the Quantitative Measure of Regional Brain Energy Substrates Uptake in the Rat

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Cited by 2 •

2013

Small-animal positron emission tomography enables the assessment of the brain's two main energy substrates: glucose and ketones. In the present method, 11C-acetoacetate and 18F-fluorodeoxyglucose are injected sequentially in each animal, and their uptake is measured quantitatively in specific brain regions determined from the magnetic resonance images.

Research

JoVE Journal - Biochemistry
Free Sample

Formulation of Vitamin A Tracer Doses for Administration to Human Subjects using Retinol Isotope Dilution Technique

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2026

The preparation of stable isotope-labeled vitamin A, necessary for the retinol isotope dilution technique, needs to conform to food safety standards. The protocol shows dosage preparation in vegetable oil at concentrations that will be suitable for the chosen delivery system and the applied analytical platform.

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