Literature DB >> 24568703

Clinical proton MR spectroscopy in central nervous system disorders.

Gülin Oz1, Jeffry R Alger, Peter B Barker, Robert Bartha, Alberto Bizzi, Chris Boesch, Patrick J Bolan, Kevin M Brindle, Cristina Cudalbu, Alp Dinçer, Ulrike Dydak, Uzay E Emir, Jens Frahm, Ramón Gilberto González, Stephan Gruber, Rolf Gruetter, Rakesh K Gupta, Arend Heerschap, Anke Henning, Hoby P Hetherington, Franklyn A Howe, Petra S Hüppi, Ralph E Hurd, Kantarci Kantarci, Dennis W J Klomp, Roland Kreis, Marijn J Kruiskamp, Martin O Leach, Alexander P Lin, Peter R Luijten, Malgorzata Marjańska, Andrew A Maudsley, Dieter J Meyerhoff, Carolyn E Mountford, Sarah J Nelson, M Necmettin Pamir, Jullie W Pan, Andrew C Peet, Harish Poptani, Stefan Posse, Petra J W Pouwels, Eva-Maria Ratai, Brian D Ross, Tom W Scheenen, Christian Schuster, Ian C P Smith, Brian J Soher, Ivan Tkáč, Daniel B Vigneron, Risto A Kauppinen.   

Abstract

A large body of published work shows that proton (hydrogen 1 [(1)H]) magnetic resonance (MR) spectroscopy has evolved from a research tool into a clinical neuroimaging modality. Herein, the authors present a summary of brain disorders in which MR spectroscopy has an impact on patient management, together with a critical consideration of common data acquisition and processing procedures. The article documents the impact of (1)H MR spectroscopy in the clinical evaluation of disorders of the central nervous system. The clinical usefulness of (1)H MR spectroscopy has been established for brain neoplasms, neonatal and pediatric disorders (hypoxia-ischemia, inherited metabolic diseases, and traumatic brain injury), demyelinating disorders, and infectious brain lesions. The growing list of disorders for which (1)H MR spectroscopy may contribute to patient management extends to neurodegenerative diseases, epilepsy, and stroke. To facilitate expanded clinical acceptance and standardization of MR spectroscopy methodology, guidelines are provided for data acquisition and analysis, quality assessment, and interpretation. Finally, the authors offer recommendations to expedite the use of robust MR spectroscopy methodology in the clinical setting, including incorporation of technical advances on clinical units. RSNA, 2014

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Year:  2014        PMID: 24568703      PMCID: PMC4263653          DOI: 10.1148/radiol.13130531

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  164 in total

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5.  Magnetic resonance in preterm and term newborns: 1H-spectroscopy in developing human brain.

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  207 in total

1.  Whole-Brain N-Acetylaspartate Concentration Is Preserved during Mild Hypercapnia Challenge.

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2.  The effects of therapeutic hypothermia on cerebral metabolism in neonates with hypoxic-ischemic encephalopathy: An in vivo 1H-MR spectroscopy study.

Authors:  Jessica L Wisnowski; Tai-Wei Wu; Aaron J Reitman; Claire McLean; Philippe Friedlich; Douglas Vanderbilt; Eugenia Ho; Marvin D Nelson; Ashok Panigrahy; Stefan Blüml
Journal:  J Cereb Blood Flow Metab       Date:  2015-10-02       Impact factor: 6.200

Review 3.  Advanced neuroimaging applied to veterans and service personnel with traumatic brain injury: state of the art and potential benefits.

Authors:  Elisabeth A Wilde; Sylvain Bouix; David F Tate; Alexander P Lin; Mary R Newsome; Brian A Taylor; James R Stone; James Montier; Samuel E Gandy; Brian Biekman; Martha E Shenton; Gerald York
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Review 4.  Whole Brain ¹H-Spectroscopy: A Developing Technique for Advanced Analysis of Cerebral Metabolism.

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6.  Improved localization, spectral quality, and repeatability with advanced MRS methodology in the clinical setting.

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7.  Frequency and phase correction for multiplexed edited MRS of GABA and glutathione.

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8.  MRS as an Aid to Diagnose Malignant Transformation in Low-Grade Gliomas with Increasing Contrast Enhancement.

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9.  In vivo magnetic resonance imaging and spectroscopy. Technological advances and opportunities for applications continue to abound.

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Review 10.  MR imaging of brain pilocytic astrocytoma: beyond the stereotype of benign astrocytoma.

Authors:  Simona Gaudino; Matia Martucci; Rosellina Russo; Emiliano Visconti; Emma Gangemi; Francesco D'Argento; Tommaso Verdolotti; Libero Lauriola; Cesare Colosimo
Journal:  Childs Nerv Syst       Date:  2016-10-18       Impact factor: 1.475

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