Literature DB >> 17094090

Signal-to-noise ratio and spectral linewidth improvements between 1.5 and 7 Tesla in proton echo-planar spectroscopic imaging.

Ricardo Otazo1, Bryon Mueller, Kamil Ugurbil, Lawrence Wald, Stefan Posse.   

Abstract

This study characterizes gains in sensitivity and spectral resolution of proton echo-planar spectroscopic imaging (PEPSI) with increasing magnetic field strength (B(0)). Signal-to-noise ratio (SNR) per unit volume and unit time, and intrinsic linewidth (LW) of N-acetyl-aspartate (NAA), creatine (Cr), and choline (Cho) were measured with PEPSI at 1.5, 3, 4, and 7 Tesla on scanners that shared a similar software and hardware platform, using circularly polarized (CP) and eight-channel phased-array (PA) head coils. Data were corrected for relaxation effects and processed with a time-domain matched filter (MF) adapted to each B(0). The SNR and LW measured with PEPSI were very similar to those measured with conventional point-resolved spectroscopy (PRESS) SI. Measurements with the CP coil demonstrated a nearly linear SNR gain with respect to B(0) in central brain regions. For the PA coil, the SNR-B(0) relationship was less than linear, but there was a substantial SNR increase in comparison to the CP coil. The LW in units of ppm decreased with B(0), resulting in improved spectral resolution. These studies using PEPSI demonstrated linear gains in SNR with respect to B(0), consistent with theoretical expectations, and a decrease in ppm LW with increasing B(0).

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Year:  2006        PMID: 17094090     DOI: 10.1002/mrm.21067

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  50 in total

1.  Multislice ¹H MRSI of the human brain at 7 T using dynamic B₀ and B₁ shimming.

Authors:  Vincent O Boer; Dennis W J Klomp; Christoph Juchem; Peter R Luijten; Robin A de Graaf
Journal:  Magn Reson Med       Date:  2011-12-12       Impact factor: 4.668

2.  Ultra-high-field magnetic resonance: Why and when?

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Review 3.  Research applications of magnetic resonance spectroscopy to investigate psychiatric disorders.

Authors:  Stephen R Dager; Neva M Corrigan; Todd L Richards; Stefan Posse
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4.  Phased array 3D MR spectroscopic imaging of the brain at 7 T.

Authors:  Duan Xu; Charles H Cunningham; Albert P Chen; Yan Li; Douglas A C Kelley; Pratik Mukherjee; John M Pauly; Sarah J Nelson; Daniel B Vigneron
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5.  Implementation of multi-echo-based correlated spectroscopic imaging and pilot findings in human brain and calf muscle.

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6.  [Problems and chances of high field magnetic resonance imaging].

Authors:  M E Ladd; M Bock
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7.  Comparison of brain gray and white matter macromolecule resonances at 3 and 7 Tesla.

Authors:  Karim Snoussi; Joseph S Gillen; Alena Horska; Nicolaas A J Puts; Subechhya Pradhan; Richard A E Edden; Peter B Barker
Journal:  Magn Reson Med       Date:  2014-09-22       Impact factor: 4.668

Review 8.  Strategies for rapid in vivo 1H and hyperpolarized 13C MR spectroscopic imaging.

Authors:  Sarah J Nelson; Eugene Ozhinsky; Yan Li; Il woo Park; Jason Crane
Journal:  J Magn Reson       Date:  2013-02-08       Impact factor: 2.229

9.  Short-echo three-dimensional H-1 MR spectroscopic imaging of patients with glioma at 7 Tesla for characterization of differences in metabolite levels.

Authors:  Yan Li; Peder Larson; Albert P Chen; Janine M Lupo; Eugene Ozhinsky; Douglas Kelley; Susan M Chang; Sarah J Nelson
Journal:  J Magn Reson Imaging       Date:  2014-06-17       Impact factor: 4.813

10.  Metabolite proton T(2) mapping in the healthy rhesus macaque brain at 3 T.

Authors:  Songtao Liu; Oded Gonen; Roman Fleysher; Lazar Fleysher; James S Babb; Brian J Soher; Chan-Gyu Joo; Eva-Maria Ratai; R Gilberto González
Journal:  Magn Reson Med       Date:  2009-11       Impact factor: 4.668

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