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  4. B(0)shimming for in vivo magnetic resonance spectroscopy: Experts' consensus recommendations
 
review article

B(0)shimming for in vivo magnetic resonance spectroscopy: Experts' consensus recommendations

Juchem, Christoph
•
Cudalbu, Cristina  
•
de Graaf, Robin A.
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June 28, 2020
Nmr In Biomedicine

Magnetic resonance spectroscopy (MRS) and spectroscopic imaging (MRSI) allow the chemical analysis of physiological processes in vivo and provide powerful tools in the life sciences and for clinical diagnostics. Excellent homogeneity of the static B(0)magnetic field over the object of interest is essential for achieving high-quality spectral results and quantitative metabolic measurements. The experimental minimization of B(0)variation is performed in a process called B(0)shimming. In this article, we summarize the concepts of B(0)field shimming using spherical harmonic shimming techniques, specific strategies for B(0)homogenization and crucial factors to consider for implementation and use in both brain and body. In addition, experts' recommendations are provided for minimum requirements for B(0)shim hardware and evaluation criteria for the primary outcome of adequate B(0)shimming for MRS and MRSI, such as the water spectroscopic linewidth.

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Type
review article
DOI
10.1002/nbm.4350
Web of Science ID

WOS:000543655000001

Author(s)
Juchem, Christoph
Cudalbu, Cristina  
de Graaf, Robin A.
Gruetter, Rolf  
Henning, Anke
Hetherington, Hoby P.
Boer, Vincent O.
Date Issued

2020-06-28

Published in
Nmr In Biomedicine
Article Number

e4350

Subjects

Biophysics

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Radiology, Nuclear Medicine & Medical Imaging

•

Spectroscopy

•

Biophysics

•

Radiology, Nuclear Medicine & Medical Imaging

•

Spectroscopy

•

b(0)magnetic field

•

homogenization

•

shimming

•

spherical harmonic functions

•

human brain

•

mr spectroscopy

•

rat-brain

•

neurochemical profile

•

h-1-nmr spectroscopy

•

proton spectroscopy

•

relaxation-times

•

mouse models

•

human breast

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h-1 mrs

•

CIBM-AIT

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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CIBM  
Available on Infoscience
July 12, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/170034
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