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  3. Elucidation of the downfield spectrum of human brain at 7 T using multiple inversion recovery delays and echo times.
 

Elucidation of the downfield spectrum of human brain at 7 T using multiple inversion recovery delays and echo times.

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BORIS DOI
10.7892/boris.93293
Publisher DOI
10.1002/mrm.26343
PubMed ID
27454217
Description
PURPOSE

To characterize the downfield spectrum at 5-10 ppm in the human brain at a high magnetic field of 7 T. Knowledge of relaxation parameters is of interest for spectroscopy as well as chemical exchange-dependent saturation transfer experiments.

METHODS

Water-suppressed spectra were recorded as echo time and inversion time series in healthy volunteers to investigate T2 and T1 values of downfield peaks in gray matter at 7T. The spectra were fitted in a two-dimensional fashion to a heuristic model of a series of Voigt lines, and the relaxation times were obtained for 12 peaks of interest.

RESULTS

The mean T2 values averaged over the volunteers ranged from 24 to 158 ms, whereas the mean T1 values ranged from 0.22 to 2.40 s. Spectra of specific inversion and echo times revealed superposition of the amide peaks of N-acetylaspartate with short T2 and an inhomogeneously broadened component with longer T2 .

CONCLUSIONS

T2 values were shorter than expected for most peaks, whereas T1 values had a very wide range; shorter relaxation times for some peaks suggests the presence of macromolecules. Most of the larger peaks seemed to be composed of overlapping components, because the Gaussian widths in the Voigt line shape descriptions were larger than expected based on field inhomogeneities. Magn Reson Med, 2016. © 2016 Wiley Periodicals, Inc.
Date of Publication
2017
Publication Type
Article
Keyword(s)
7 T
•
T1 relaxation time
•
T2 relaxation time
•
human brain
•
metabolites
•
proton MR spectroscopy
Language(s)
en
Contributor(s)
Fichtner, Nicole Damara
DIPR, Magnetresonanz-Spektroskopie und Methodologie (AMSM)
Henning, Anke
Zoelch, Niklaus
Boesch, Christoph Hansorcid-logo
DIPR, Magnetresonanz-Spektroskopie und Methodologie (AMSM)
Kreis, Rolandorcid-logo
DIPR, Magnetresonanz-Spektroskopie und Methodologie (AMSM)
Additional Credits
DIPR, Magnetresonanz-Spektroskopie und Methodologie (AMSM)
Series
Magnetic resonance in medicine
Publisher
Wiley-Liss
ISSN
0740-3194
Access(Rights)
open.access
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