Literature DB >> 23804212

Dispersion of relaxation rates in the rotating frame under the action of spin-locking pulses and diffusion in inhomogeneous magnetic fields.

John T Spear1, Zhongliang Zu, John C Gore.   

Abstract

PURPOSE: A method is described for characterizing magnetically inhomogeneous media and the spatial scales of intrinsic susceptibility variations within samples. The rate of spin-lattice relaxation in the rotating frame, R1ρ , is affected by diffusion effects to a degree that depends on the magnitude of an applied spin-locking field. Appropriate analysis of the dispersion of R1ρ with locking field may be used to characterize susceptibility variations in inhomogeneous tissues. THEORY AND METHODS: The contribution of diffusion to R1ρ is quantified by an analytic expression derived by analyzing of the effects of diffusion through periodic variations of magnetic susceptibility and is used to predict the effects of inhomogeneities in simple phantoms. The theory is further applied to imaging to derive parametric images that portray the dimensions of susceptibility inhomogeneities independent of their magnitude.
RESULTS: Significant dispersion of R1ρ with locking field was predicted and measured experimentally for suspensions of microspheres ranging from 1 to 90 μm in diameter. For scales of practical interest, these dispersion effects occur at much lower locking fields than the range in which chemical exchange effects cause similar dispersion.
CONCLUSION: There is good agreement between theory and experiment, and the method has potential for quantitative tissue characterization and functional imaging.
Copyright © 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  T1ρ; diffusion; dispersion; spin-lock; susceptibility

Mesh:

Substances:

Year:  2013        PMID: 23804212      PMCID: PMC3919873          DOI: 10.1002/mrm.24837

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


  25 in total

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Authors:  I Troprès; S Grimault; A Vaeth; E Grillon; C Julien; J F Payen; L Lamalle; M Décorps
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2.  NMR relaxation in tissues with weak magnetic inhomogeneities.

Authors:  J H Jensen; R Chandra
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3.  Gaussian approximation in the theory of MR signal formation in the presence of structure-specific magnetic field inhomogeneities.

Authors:  Alexander L Sukstanskii; Dmitriy A Yablonskiy
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4.  Effects of intracellular pH, blood, and tissue oxygen tension on T1rho relaxation in rat brain.

Authors:  Mikko I Kettunen; Olli H J Gröhn; M Johanna Silvennoinen; Markku Penttonen; Risto A Kauppinen
Journal:  Magn Reson Med       Date:  2002-09       Impact factor: 4.668

5.  Gaussian approximation in the theory of MR signal formation in the presence of structure-specific magnetic field inhomogeneities. Effects of impermeable susceptibility inclusions.

Authors:  Alexander L Sukstanskii; Dmitriy A Yablonskiy
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6.  T2, Carr-Purcell T2 and T1rho of fat and water as surrogate markers of trabecular bone structure.

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Journal:  Phys Med Biol       Date:  2008-01-07       Impact factor: 3.609

7.  Spin-locking versus chemical exchange saturation transfer MRI for investigating chemical exchange process between water and labile metabolite protons.

Authors:  Tao Jin; Joonas Autio; Takayuki Obata; Seong-Gi Kim
Journal:  Magn Reson Med       Date:  2010-11-30       Impact factor: 4.668

8.  In vivo assessment of tumoral angiogenesis.

Authors:  I Troprès; L Lamalle; M Péoc'h; R Farion; Y Usson; M Décorps; C Rémy
Journal:  Magn Reson Med       Date:  2004-03       Impact factor: 4.668

9.  T2 and T1rho MRI in articular cartilage systems.

Authors:  Nina M Menezes; Martha L Gray; James R Hartke; Deborah Burstein
Journal:  Magn Reson Med       Date:  2004-03       Impact factor: 4.668

10.  Contributions of chemical and diffusive exchange to T1ρ dispersion.

Authors:  Jared Guthrie Cobb; Jingping Xie; John C Gore
Journal:  Magn Reson Med       Date:  2012-07-12       Impact factor: 4.668

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  9 in total

1.  Functional MRI using spin lock editing preparation pulses.

Authors:  Swati Rane; John T Spear; Zhongliang Zu; Manus J Donahue; John C Gore
Journal:  Magn Reson Imaging       Date:  2014-04-13       Impact factor: 2.546

2.  Spin-lock imaging of early tissue pH changes in ischemic rat brain.

Authors:  Zhongliang Zu; Aqeela Afzal; Hua Li; Jingping Xie; John C Gore
Journal:  NMR Biomed       Date:  2018-02-09       Impact factor: 4.044

Review 3.  New insights into rotating frame relaxation at high field.

Authors:  John T Spear; John C Gore
Journal:  NMR Biomed       Date:  2016-02-11       Impact factor: 4.044

4.  Spin-lock imaging of exogenous exchange-based contrast agents to assess tissue pH.

Authors:  Zhongliang Zu; Hua Li; Xiaoyu Jiang; John C Gore
Journal:  Magn Reson Med       Date:  2017-03-20       Impact factor: 4.668

5.  Effects of diffusion in magnetically inhomogeneous media on rotating frame spin-lattice relaxation.

Authors:  John T Spear; John C Gore
Journal:  J Magn Reson       Date:  2014-10-17       Impact factor: 2.229

6.  R1ρ sensitivity to pH and other compounds at clinically accessible spin-lock fields in the presence of proteins.

Authors:  Nana Owusu; Casey P Johnson; William Kearney; Dan Thedens; John Wemmie; Vincent A Magnotta
Journal:  NMR Biomed       Date:  2019-11-19       Impact factor: 4.044

7.  Spin-lock relaxation rate dispersion reveals spatiotemporal changes associated with tubulointerstitial fibrosis in murine kidney.

Authors:  Feng Wang; Daniel C Colvin; Suwan Wang; Hua Li; Zhongliang Zu; Raymond C Harris; Ming-Zhi Zhang; John C Gore
Journal:  Magn Reson Med       Date:  2020-03-06       Impact factor: 4.668

8.  Spin-lock imaging of intrinsic susceptibility gradients in tumors.

Authors:  Zhongliang Zu; Vaibhav Janve; John C Gore
Journal:  Magn Reson Med       Date:  2019-12-27       Impact factor: 4.668

9.  Establishing upper limits on neuronal activity-evoked pH changes with APT-CEST MRI at 7 T.

Authors:  Vitaliy Khlebnikov; Jeroen C W Siero; Alex A Bhogal; Peter R Luijten; Dennis W J Klomp; Hans Hoogduin
Journal:  Magn Reson Med       Date:  2017-11-20       Impact factor: 4.668

  9 in total

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