Literature DB >> 10401593

Proton MRS in neurological disorders.

S Bonavita1, F Di Salle, G Tedeschi.   

Abstract

Proton magnetic resonance spectroscopy (1H MRS) permits the acquisition of the signal arising from several brain metabolites. At long echo-time (TE) 1H MRS can detect N-acetyl-aspartate containing compounds, choline containing compounds, creatine + phosphocreatine and lactate. At short TE, lipids, tryglicerides, alanine, glutamate, glutamine, GABA, scyllo-inositol, glucose, myo-inositol, carnosine and histydine are visible. 1H MRS can be performed with single-voxel, multivoxel, single slice and multislice techniques. With single voxel 1H MRS it is possible to measure metabolites relaxation time, which allows the measurement of metabolite concentrations. This technique can be useful in the study of focal lesions in the central nervous system (CNS) such as epilepsy (pre-surgical identification of epileptic focus), brain tumors (evaluation of recurrence and radiation necrosis), stroke, multiple sclerosis, etc. Single slice and multislice 1H MRS imaging (1H MRSI) can be performed only at long TE and permits the mapping of the brain metabolites distribution which makes them particularly useful in studying diffuse diseases and heterogeneous lesions of the CNS. 1H MRS can also be useful in the evaluation of 'ischemic penumbra' of stroke; developmental (myelin and neuronal dysgenesis); head trauma (evaluation of cerebral damage not visible with MRI); degenerative disorders (identification of microscopic pathology not visible with MRI); and metabolic diseases (metabolic disturbances with specific metabolic patterns).

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Year:  1999        PMID: 10401593     DOI: 10.1016/s0720-048x(99)00051-0

Source DB:  PubMed          Journal:  Eur J Radiol        ISSN: 0720-048X            Impact factor:   3.528


  28 in total

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Authors:  L M Levy; A J Degnan
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3.  Fast quantification of proton magnetic resonance spectroscopic imaging with artificial neural networks.

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Review 4.  Proton MR spectroscopy of the brain at 3 T: an update.

Authors:  Alfonso Di Costanzo; Francesca Trojsi; Michela Tosetti; Timo Schirmer; Silke M Lechner; Teresa Popolizio; Tommaso Scarabino
Journal:  Eur Radiol       Date:  2007-01-18       Impact factor: 5.315

Review 5.  Laboratory approach to mitochondrial diseases.

Authors:  D Parra; A González; C Mugueta; A Martínez; I Monreal
Journal:  J Physiol Biochem       Date:  2001-09       Impact factor: 4.158

6.  A multicenter reproducibility study of single-voxel 1H-MRS of the medial temporal lobe.

Authors:  Frank Träber; Wolfgang Block; Nikolaus Freymann; Okan Gür; Thomas Kucinski; Thilo Hammen; Gabriele Ende; Ulrich Pilatus; Harald Hampel; Hans H Schild; Reinhard Heun; Frank Jessen
Journal:  Eur Radiol       Date:  2006-01-17       Impact factor: 5.315

7.  Magnetic resonance spectroscopic imaging detects abnormalities in normal-appearing frontal lobe of patients with Sturge-Weber syndrome.

Authors:  Carlos E A Batista; Harry T Chugani; Jiani Hu; E Mark Haacke; Michael E Behen; Emily J Helder; Csaba Juhász
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Review 8.  Neurochemistry of drug action: insights from proton magnetic resonance spectroscopic imaging and their relevance to addiction.

Authors:  Stephanie C Licata; Perry F Renshaw
Journal:  Ann N Y Acad Sci       Date:  2010-02       Impact factor: 5.691

9.  Attention-deficit/hyperactivity disorder and brain metabolites from proton magnetic resonance spectroscopy: a systematic review and meta-analysis protocol.

Authors:  Marcos Vinícius Vidor; Alana Castro Panzenhagen; Alexandre Ribeiro Martins; Renata Basso Cupertino; Cibele Edom Bandeira; Luis Augusto Rohde; Diego Luiz Rovaris; Claiton Henrique Dotto Bau; Eugênio Horácio Grevet
Journal:  Trends Psychiatry Psychother       Date:  2021-02-15

10.  MR spectroscopy in the evaluation of recurrent contrast-enhancing lesions in the posterior fossa after tumor treatment.

Authors:  P Weybright; P Maly; D Gomez-Hassan; C Blaesing; P C Sundgren
Journal:  Neuroradiology       Date:  2004-04-23       Impact factor: 2.804

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