Literature DB >> 12111954

Phase coherent averaging in magnetic resonance spectroscopy using interleaved navigator scans: compensation of motion artifacts and magnetic field instabilities.

Thorsten Thiel1, Michael Czisch, Gregor K Elbel, Juergen Hennig.   

Abstract

The quality of spectra in (1)H magnetic resonance spectroscopy (MRS) is strongly affected by temporal signal instabilities during the acquisition. One reason for these instabilities are hardware imperfections, e.g., drifts of the main magnetic field in superconducting magnets. This is of special concern in high-field systems where the specification of the field stability is close to the spectral linewidth. A second major potential source of artifacts, particularly in clinical MRS, is patient motion. Using standard acquisition schemes of phase-cycled averaging of the individual acquisitions, long-term effects (field drifts) as well as changes on a shorter time scale (motion) can severely reduce spectral quality. The new technique for volume-selective MRS presented here is based on the additional interleaved acquisition of a navigator signal during the recovery time of the metabolite acquisition. It corrects for temporal signal instabilities by means of a deconvolution of the metabolite and the navigator signal. This leads to phase-corrected individual metabolite scans and upon summation to a phase-coherent averaging scheme. The interleaved navigator acquisition does not require any user interaction or supervision, while sequence efficiency is maintained. Copyright 2002 Wiley-Liss, Inc.

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Year:  2002        PMID: 12111954     DOI: 10.1002/mrm.10174

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


  23 in total

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Journal:  Eur Radiol       Date:  2007-01-18       Impact factor: 5.315

2.  FID modulus: a simple and efficient technique to phase and align MR spectra.

Authors:  Yann Le Fur; Patrick J Cozzone
Journal:  MAGMA       Date:  2013-06-21       Impact factor: 2.310

3.  Impact of frequency drift on gamma-aminobutyric acid-edited MR spectroscopy.

Authors:  Ashley D Harris; Benjamin Glaubitz; Jamie Near; C John Evans; Nicolaas A J Puts; Tobias Schmidt-Wilcke; Martin Tegenthoff; Peter B Barker; Richard A E Edden
Journal:  Magn Reson Med       Date:  2013-11-11       Impact factor: 4.668

4.  Spectroscopic imaging with prospective motion correction and retrospective phase correction.

Authors:  Thomas Lange; Julian Maclaren; Martin Buechert; Maxim Zaitsev
Journal:  Magn Reson Med       Date:  2011-08-29       Impact factor: 4.668

5.  Localization errors in MR spectroscopic imaging due to the drift of the main magnetic field and their correction.

Authors:  Assaf Tal; Oded Gonen
Journal:  Magn Reson Med       Date:  2012-11-19       Impact factor: 4.668

6.  Prospective frequency correction for macromolecule-suppressed GABA editing at 3T.

Authors:  Richard A E Edden; Georg Oeltzschner; Ashley D Harris; Nicolaas A J Puts; Kimberly L Chan; Vincent O Boer; Michael Schär; Peter B Barker
Journal:  J Magn Reson Imaging       Date:  2016-05-30       Impact factor: 4.813

7.  Real-time motion and B0 correction for localized adiabatic selective refocusing (LASER) MRSI using echo planar imaging volumetric navigators.

Authors:  Aaron T Hess; Ovidiu C Andronesi; M Dylan Tisdall; A Gregory Sorensen; André J W van der Kouwe; Ernesta M Meintjes
Journal:  NMR Biomed       Date:  2011-07-28       Impact factor: 4.044

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

Authors:  Mark Mikkelsen; Muhammad G Saleh; Jamie Near; Kimberly L Chan; Tao Gong; Ashley D Harris; Georg Oeltzschner; Nicolaas A J Puts; Kim M Cecil; Iain D Wilkinson; Richard A E Edden
Journal:  Magn Reson Med       Date:  2017-12-07       Impact factor: 4.668

9.  Prospective frequency correction using outer volume suppression-localized navigator for MR spectroscopy and spectroscopic imaging.

Authors:  Chu-Yu Lee; In-Young Choi; Phil Lee
Journal:  Magn Reson Med       Date:  2018-05-13       Impact factor: 4.668

10.  Challenges of using MR spectroscopy to detect neural progenitor cells in vivo.

Authors:  Z Dong; W Dreher; D Leibfritz; B S Peterson
Journal:  AJNR Am J Neuroradiol       Date:  2009-04-08       Impact factor: 3.825

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