The clinical utility of proton magnetic resonance spectroscopy in traumatic brain injury: recommendations from the ENIGMA MRS working group.

Proton (1H) magnetic resonance spectroscopy provides a non-invasive and quantitative measure of brain metabolites. Traumatic brain injury impacts cerebral metabolism and a number of research groups have successfully used this technique as a biomarker of injury and/or outcome in both pediatric and ad...

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Publicado en:Brain Imaging & Behavior Vol. 15; no. 2; pp. 504 - 526
Autores principales: Bartnik-Olson, Brenda L, Alger, Jeffry R, Babikian, Talin, Harris, Ashley D, Holshouser, Barbara, Kirov, Ivan I, Maudsley, Andrew A, Thompson, Paul M, Dennis, Emily L, Tate, David F, Wilde, Elisabeth A, Lin, Alexander
Formato: Journal Article
Publicado: Springer Nature Apr2021
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Springer Nature
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        atl: The clinical utility of proton magnetic resonance spectroscopy in traumatic brain injury: recommendations from the ENIGMA MRS working group.
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        au:
          Bartnik-Olson, Brenda L
          Alger, Jeffry R
          Babikian, Talin
          Harris, Ashley D
          Holshouser, Barbara
          Kirov, Ivan I
          Maudsley, Andrew A
          Thompson, Paul M
          Dennis, Emily L
          Tate, David F
          Wilde, Elisabeth A
          Lin, Alexander
        affil: Department of Radiology, Loma Linda University Medical Center, Loma Linda, CA, USA
      sug:
        subj:
          Magnetic Resonance Imaging
          Child
          Brain
          Adult
          Proton Magnetic Resonance Spectroscopy
          Magnetic Resonance Spectroscopy
          Clinical Assessment Tools
          Scales
          Child: 6-12 years
          Adult: 19-44 years
      ab: Proton (1H) magnetic resonance spectroscopy provides a non-invasive and quantitative measure of brain metabolites. Traumatic brain injury impacts cerebral metabolism and a number of research groups have successfully used this technique as a biomarker of injury and/or outcome in both pediatric and adult TBI populations. However, this technique is underutilized, with studies being performed primarily at centers with access to MR research support. In this paper we present a technical introduction to the acquisition and analysis of in vivo 1H magnetic resonance spectroscopy and review 1H magnetic resonance spectroscopy findings in different injury populations. In addition, we propose a basic 1H magnetic resonance spectroscopy data acquisition scheme (Supplemental Information) that can be added to any imaging protocol, regardless of clinical magnetic resonance platform. We outline a number of considerations for study design as a way of encouraging the use of 1H magnetic resonance spectroscopy in the study of traumatic brain injury, as well as recommendations to improve data harmonization across groups already using this technique.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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