Related Experiment Video
Updated: Jun 6, 2026

A Dual Tracer PET-MRI Protocol for the Quantitative Measure of Regional Brain Energy Substrates Uptake in the Rat
Published on: December 28, 2013
Quantification of the in vivo brain ultrashort-T2* component in healthy volunteers
Nikhil Deveshwar1,2,3, Jingwen Yao2, Misung Han2
1Department of Radiology and Biomedical Imaging, University of California, San Francisco, San Francisco, California, USA.
Purpose:
Recent work has shown MRI is able to measure and quantify signals of phospholipid membrane-bound protons associated with myelin in the human brain. This work seeks to develop an improved technique for characterizing this brain ultrashort- component in vivo accounting for weighting.
Methods:
Data from ultrashort echo time scans from 16 healthy volunteers with variable flip angles (VFA) were collected and fitted into an advanced regression model to quantify signal fraction, relaxation time, and frequency shift of the ultrashort- component.
Results:
The fitted components show intra-subject differences of different white matter structures and significantly elevated ultrashort- signal fraction in the corticospinal tracts measured at 0.09 versus 0.06 in other white matter structures and significantly elevated ultrashort- frequency shift in the body of the corpus callosum at 1.5 versus 2.0 ppm in other white matter structures.
Conclusion:
The significantly different measured components and measured relaxation time of the ultrashort- component suggest that this method is picking up novel signals from phospholipid membrane-bound protons.
More Related Videos
09:03Radiotracer Administration for High Temporal Resolution Positron Emission Tomography of the Human Brain: Application to FDG-fPET
Published on: October 22, 2019
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