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review article

Magnetic resonance spectroscopy in the rodent brain: Experts' consensus recommendations

Lanz, Bernard  
•
Abaei, Alireza
•
Braissant, Olivier
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August 26, 2020
Nmr In Biomedicine

In vivo MRS is a non-invasive measurement technique used not only in humans, but also in animal models using high-field magnets. MRS enables the measurement of metabolite concentrations as well as metabolic rates and their modifications in healthy animals and disease models. Such data open the way to a deeper understanding of the underlying biochemistry, related disturbances and mechanisms taking place during or prior to symptoms and tissue changes. In this work, we focus on the main preclinical(1)H,P-31 and(13)C MRS approaches to study brain metabolism in rodent models, with the aim of providing general experts' consensus recommendations (animal models, anesthesia, data acquisition protocols). An overview of the main practical differences in preclinical compared with clinical MRS studies is presented, as well as the additional biochemical information that can be obtained in animal models in terms of metabolite concentrations and metabolic flux measurements. The properties of high-field preclinical MRS and the technical limitations are also described.

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Type
review article
DOI
10.1002/nbm.4325
Web of Science ID

WOS:000562763300001

Author(s)
Lanz, Bernard  
•
Abaei, Alireza
•
Braissant, Olivier
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Choi, In-Young
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Cudalbu, Cristina  
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Henry, Pierre-Gilles
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Gruetter, Rolf  
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Kara, Firat
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Kantarci, Kejal
•
Lee, Phil
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Date Issued

2020-08-26

Publisher

WILEY

Published in
Nmr In Biomedicine
Article Number

e4325

Subjects

Biophysics

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Radiology, Nuclear Medicine & Medical Imaging

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Spectroscopy

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Biophysics

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Radiology, Nuclear Medicine & Medical Imaging

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Spectroscopy

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anesthesia

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brain metabolism

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consensus review

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dynamic mrs

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neurochemical profile

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preclinical mrs

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c-13 nmr-spectroscopy

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pentobarbital sleeping time

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vivo h-1-nmr spectroscopy

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single-shot localization

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proton mr spectroscopy

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central-nervous-system

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in-vivo

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rat-brain

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neurochemical profile

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relaxation-times

Editorial or Peer reviewed

REVIEWED

Written at

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Available on Infoscience
September 10, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/171561
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