Literature DB >> 17235536

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

Alfonso Di Costanzo1, Francesca Trojsi, Michela Tosetti, Timo Schirmer, Silke M Lechner, Teresa Popolizio, Tommaso Scarabino.   

Abstract

Proton magnetic resonance spectroscopy ((1)H-MRS) provides specific metabolic information not otherwise observable by any other imaging method. (1)H-MRS of the brain at 3 T is a new tool in the modern neuroradiological armamentarium whose main advantages, with respect to the well-established and technologically advanced 1.5-T (1)H-MRS, include a higher signal-to-noise ratio, with a consequent increase in spatial and temporal resolutions, and better spectral resolution. These advantages allow the acquisition of higher quality and more easily quantifiable spectra in smaller voxels and/or in shorter times, and increase the sensitivity in metabolite detection. However, these advantages may be hampered by intrinsic field-dependent technical issues, such as decreased T(2) signal, chemical shift dispersion errors, J-modulation anomalies, increased magnetic susceptibility, eddy current artifacts, challenges in designing and obtaining appropriate radiofrequency coils, magnetic field instability and safety hazards. All these limitations have been tackled by manufacturers and researchers and have received one or more solutions. Furthermore, advanced (1)H-MRS techniques, such as specific spectral editing, fast (1)H-MRS imaging and diffusion tensor (1)H-MRS imaging, have been successfully implemented at 3 T. However, easier and more robust implementations of these techniques are still needed before they can become more widely used and undertake most of the clinical and research (1)H-MRS applications.

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Year:  2007        PMID: 17235536     DOI: 10.1007/s00330-006-0546-1

Source DB:  PubMed          Journal:  Eur Radiol        ISSN: 0938-7994            Impact factor:   5.315


  72 in total

1.  Brain GABA editing without macromolecule contamination.

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2.  Frame-by-frame PRESS 1H-MRS of the brain at 3 T: the effects of physiological motion.

Authors:  Rachel Katz-Brull; Robert E Lenkinski
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3.  Routine clinical brain MRI sequences for use at 3.0 Tesla.

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4.  ProFit: two-dimensional prior-knowledge fitting of J-resolved spectra.

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Journal:  NMR Biomed       Date:  2006-04       Impact factor: 4.044

Review 5.  Biological and clinical MRS at ultra-high field.

Authors:  H P Hetherington; J W Pan; W J Chu; G F Mason; B R Newcomer
Journal:  NMR Biomed       Date:  1997-12       Impact factor: 4.044

6.  1H chemical shift imaging of the brain in guanidino methyltransferase deficiency, a creatine deficiency syndrome; guanidinoacetate accumulation in the gray matter.

Authors:  P E Sijens; K T Verbruggen; L C Meiners; R J Soorani-Lunsing; J P Rake; M Oudkerk
Journal:  Eur Radiol       Date:  2005-04-27       Impact factor: 5.315

7.  Fast spectroscopic imaging strategies for potential applications in fMRI.

Authors:  Robert V Mulkern; Nan-kuei Chen; Koichi Oshio; Lawrence P Panych; Frank J Rybicki; Giulio Gambarota
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8.  Proton magnetic resonance spectroscopy of the brain of a neonate with nonketotic hyperglycinemia: in vivo-in vitro (ex vivo) correlation.

Authors:  T A G M Huisman; T Thiel; B Steinmann; G Zeilinger; E Martin
Journal:  Eur Radiol       Date:  2001-08-28       Impact factor: 5.315

9.  Brain gamma-aminobutyric acid measurement by proton double-quantum filtering with selective J rewinding.

Authors:  Changho Choi; Nicholas J Coupland; Christopher C Hanstock; Catherine J Ogilvie; Andrea C M Higgins; Dan Gheorghiu; Peter S Allen
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10.  Proton magnetic resonance spectroscopy of the primary motor cortex in patients with motor neuron disease: subgroup analysis and follow-up measurements.

Authors:  W Block; J Karitzky; F Träber; C Pohl; E Keller; R R Mundegar; R Lamerichs; H Rink; F Ries; H H Schild; F Jerusalem
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  31 in total

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Authors:  X Yao; M Zeng; H Wang; S Fei; S Rao; Y Ji
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2.  Recovery of Damped Exponentials Using Structured Low Rank Matrix Completion.

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3.  In vivo neurochemistry of primary focal hand dystonia: a magnetic resonance spectroscopic neurometabolite profiling study at 3T.

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4.  Proton MR spectroscopy of cerebral gliomas at 3 T: spatial heterogeneity, and tumour grade and extent.

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Journal:  Eur Radiol       Date:  2008-04-04       Impact factor: 5.315

5.  Recurrent glioblastoma multiforme versus radiation injury: a multiparametric 3-T MR approach.

Authors:  Alfonso Di Costanzo; Tommaso Scarabino; Francesca Trojsi; Teresa Popolizio; Simona Bonavita; Mario de Cristofaro; Renata Conforti; Adriana Cristofano; Claudio Colonnese; Ugo Salvolini; Gioacchino Tedeschi
Journal:  Radiol Med       Date:  2014-01-10       Impact factor: 3.469

6.  3.0 T proton magnetic resonance spectroscopy of the liver: quantification of choline.

Authors:  Li Xu; Bo Liu; Yan Huang; Xian Liu; Si-Wei Zhang; Xue-Gang Xin; Jin-Zhi Zheng
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7.  Possible role of single-voxel (1)H-MRS in differential diagnosis of suprasellar tumors.

Authors:  Mikhail F Chernov; Takakazu Kawamata; Kosaku Amano; Yuko Ono; Takashi Suzuki; Ryoichi Nakamura; Yoshihiro Muragaki; Hiroshi Iseki; Osami Kubo; Tomokatsu Hori; Kintomo Takakura
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8.  Denoising MR spectroscopic imaging data with low-rank approximations.

Authors:  Hien M Nguyen; Xi Peng; Minh N Do; Zhi-Pei Liang
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Review 9.  High field MRI in the diagnosis of multiple sclerosis: high field-high yield?

Authors:  Mike P Wattjes; Frederik Barkhof
Journal:  Neuroradiology       Date:  2009-03-11       Impact factor: 2.804

10.  Phenylketonuria: white-matter changes assessed by 3.0-T magnetic resonance (MR) imaging, MR spectroscopy and MR diffusion.

Authors:  T Scarabino; T Popolizio; M Tosetti; D Montanaro; G M Giannatempo; R Terlizzi; S Pollice; A Maiorana; N Maggialetti; A Carriero; V Leuzzi; U Salvolini
Journal:  Radiol Med       Date:  2009-03-10       Impact factor: 3.469

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