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Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses

OBJECTIVE: To explore the possibilities of proton spectroscopic imaging ((1)H-MRSI) of the human brain at 7 Tesla with adiabatic refocusing pulses. MATERIALS AND METHODS: A combination of conventional slice selective excitation and two pairs of slice selective adiabatic refocusing pulses (semi-LASER...

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Autores principales: Scheenen, Tom W. J., Heerschap, Arend, Klomp, Dennis W. J.
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2798032/
https://www.ncbi.nlm.nih.gov/pubmed/18210177
http://dx.doi.org/10.1007/s10334-007-0094-y
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author Scheenen, Tom W. J.
Heerschap, Arend
Klomp, Dennis W. J.
author_facet Scheenen, Tom W. J.
Heerschap, Arend
Klomp, Dennis W. J.
author_sort Scheenen, Tom W. J.
collection PubMed
description OBJECTIVE: To explore the possibilities of proton spectroscopic imaging ((1)H-MRSI) of the human brain at 7 Tesla with adiabatic refocusing pulses. MATERIALS AND METHODS: A combination of conventional slice selective excitation and two pairs of slice selective adiabatic refocusing pulses (semi-LASER) results in the formation of an echo from a localized volume. Depending on the used radio frequency (rf) coil efficiency and available rf power, the duration of the adiabatic full passage pulses (AFPs) is adapted to enable echo times down to 50 ms (head coil) or 30 ms (local surface coil). RESULTS: An AFP duration of 5 ms with a corresponding bandwidth of 5.1 kHz resulted in a chemical shift displacement error of 23% over 3.8 ppm at 7T. Using a local surface coil and an echo time down to 30 ms, we detected not only the three main metabolites (NAA, Cr and Cho), but also coupled signals from myo-inositol and glutamate/glutamine in spectra from 0.14 cc voxels with linewidths down to 10 Hz in 10 min measurement time. CONCLUSIONS: The semi-LASER pulse sequence enables (1)H-MRSI of the human brain at 7T for larger parts of the brain as well as small localized areas with both a high spectral and spatial resolution.
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spelling pubmed-27980322009-12-29 Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses Scheenen, Tom W. J. Heerschap, Arend Klomp, Dennis W. J. MAGMA Research Article OBJECTIVE: To explore the possibilities of proton spectroscopic imaging ((1)H-MRSI) of the human brain at 7 Tesla with adiabatic refocusing pulses. MATERIALS AND METHODS: A combination of conventional slice selective excitation and two pairs of slice selective adiabatic refocusing pulses (semi-LASER) results in the formation of an echo from a localized volume. Depending on the used radio frequency (rf) coil efficiency and available rf power, the duration of the adiabatic full passage pulses (AFPs) is adapted to enable echo times down to 50 ms (head coil) or 30 ms (local surface coil). RESULTS: An AFP duration of 5 ms with a corresponding bandwidth of 5.1 kHz resulted in a chemical shift displacement error of 23% over 3.8 ppm at 7T. Using a local surface coil and an echo time down to 30 ms, we detected not only the three main metabolites (NAA, Cr and Cho), but also coupled signals from myo-inositol and glutamate/glutamine in spectra from 0.14 cc voxels with linewidths down to 10 Hz in 10 min measurement time. CONCLUSIONS: The semi-LASER pulse sequence enables (1)H-MRSI of the human brain at 7T for larger parts of the brain as well as small localized areas with both a high spectral and spatial resolution. Springer-Verlag 2008-01-22 2008 /pmc/articles/PMC2798032/ /pubmed/18210177 http://dx.doi.org/10.1007/s10334-007-0094-y Text en © The Author(s) 2008 https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution,and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Research Article
Scheenen, Tom W. J.
Heerschap, Arend
Klomp, Dennis W. J.
Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title_full Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title_fullStr Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title_full_unstemmed Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title_short Towards (1)H-MRSI of the human brain at 7T with slice-selective adiabatic refocusing pulses
title_sort towards (1)h-mrsi of the human brain at 7t with slice-selective adiabatic refocusing pulses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2798032/
https://www.ncbi.nlm.nih.gov/pubmed/18210177
http://dx.doi.org/10.1007/s10334-007-0094-y
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