Related Experiment Video
Updated: Aug 21, 2025

Radiotracer Administration for High Temporal Resolution Positron Emission Tomography of the Human Brain: Application to FDG-fPET
Published on: October 22, 2019
Comparison of performance between an -FDG PET normal brain template and a commercial template using the MIMneuro
Chanisa Chotipanich1, Natdanai Hirata1, Attapon Jantarato1
1Chulabhorn Hospital, Chulabhorn Royal Academy, National Cyclotron and PET Centre, Bangkok, Thailand.
Purpose:
The aim of this study was to create and validate a normal brain template of -fluorodeoxyglucose ( ) uptake using the MIMneuro software to improve clinical practice.
Approach:
One hundred and nine volunteers underwent an positron emission tomography/computed tomography scan. Sixty-three participants with normal Alzheimer's disease (AD) biomarkers were used to create a template. A group of 23 participants with abnormal AD biomarkers and an additional group of 23 participants with normal AD biomarkers were used to validate the performance of the generated template. The MIMneuro software was used for the analysis and template creation. The performance of our newly created template was compared with that of the MIMneuro software template in the validation groups. Results were confirmed by visual analysis by nuclear medicine physicians.
Results:
Our created template provided higher sensitivity, specificity, positive predictive value, and negative predictive value (NPV; 90%, 97.83%, 100%, and 100%, respectively) than did the MIMneuro template when using the positive validation group. Similarly, slightly higher performance was observed for our template than for the MIMneuro template in the negative validation group (the highest specificity and NPV were 100% and 100%, respectively).
Conclusions:
Our normal brain template for was shown to be clinically useful because it enabled more accurate discrimination between aging brain and patients with AD. Thus, the template may improve the accuracy of AD diagnoses.
More Related Videos
07:28Studying Metabolic Brain Connectivity Using 2-Deoxy-2-[18F]Fluoro-D-Glucose Dynamic Positron Emission Tomography at the Single-subject Level
Published on: January 24, 2025
09:36In vivo Positron Emission Tomography to Reveal Activity Patterns Induced by Deep Brain Stimulation in Rats
Published on: March 23, 2022