Literature DB >> 9339442

In vivo imaging of a stable paramagnetic probe by pulsed-radiofrequency electron paramagnetic resonance spectroscopy.

R Murugesan1, J A Cook, N Devasahayam, M Afeworki, S Subramanian, R Tschudin, J A Larsen, J B Mitchell, A Russo, M C Krishna.   

Abstract

Imaging of free radicals by electron paramagnetic resonance (EPR) spectroscopy using time domain acquisition as in nuclear magnetic resonance (NMR) has not been attempted because of the short spin-spin relaxation times, typically under 1 microsecond, of most biologically relevant paramagnetic species. Recent advances in radiofrequency (RF) electronics have enabled the generation of pulses of the order of 10-50 ns. Such short pulses provide adequate spectral coverage for EPR studies at 300 MHz resonant frequency. Acquisition of free induction decays (FID) of paramagnetic species possessing inhomogenously broadened narrow lines after pulsed excitation is feasible with an appropriate digitizer/averager. This report describes the use of time-domain RF EPR spectrometry and imaging for in vivo applications. FID responses were collected from a water-soluble, narrow line width spin probe within phantom samples in solution and also when infused intravenously in an anesthetized mouse. Using static magnetic field gradients and back-projection methods of image reconstruction, two-dimensional images of the spin-probe distribution were obtained in phantom samples as well as in a mouse. The resolution in the images was better than 0.7 mm and devoid of motional artifacts in the in vivo study. Results from this study suggest a potential use for pulsed RF EPR imaging (EPRI) for three-dimensional spatial and spectral-spatial imaging applications. In particular, pulsed EPRI may find use in vivo studies to minimize motional artifacts from cardiac and lung motion that cause significant problems in frequency-domain spectral acquisition, such as in continuous wave (cw) EPR techniques.

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Year:  1997        PMID: 9339442     DOI: 10.1002/mrm.1910380309

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


  13 in total

1.  Integration of digital signal processing technologies with pulsed electron paramagnetic resonance imaging.

Authors:  Randall H Pursley; Ghadi Salem; Nallathamby Devasahayam; Sankaran Subramanian; Janusz Koscielniak; Murali C Krishna; Thomas J Pohida
Journal:  J Magn Reson       Date:  2005-10-21       Impact factor: 2.229

2.  Direct detection and time-locked subsampling applied to pulsed electron paramagnetic resonance imaging.

Authors:  Randall H Pursley; Ghadi Salem; Thomas J Pohida; Nallathamby Devasahayam; Sankaran Subramanian; Murali C Krishna
Journal:  Rev Sci Instrum       Date:  2005-05       Impact factor: 1.523

3.  Evaluation of sub-microsecond recovery resonators for in vivo electron paramagnetic resonance imaging.

Authors:  F Hyodo; S Subramanian; N Devasahayam; R Murugesan; K Matsumoto; J B Mitchell; M C Krishna
Journal:  J Magn Reson       Date:  2007-11-07       Impact factor: 2.229

4.  Fast gated EPR imaging of the beating heart: spatiotemporally resolved 3D imaging of free-radical distribution during the cardiac cycle.

Authors:  Zhiyu Chen; Levy A Reyes; David H Johnson; Murugesan Velayutham; Changjun Yang; Alexandre Samouilov; Jay L Zweier
Journal:  Magn Reson Med       Date:  2012-04-03       Impact factor: 4.668

5.  Comparison of pulse sequences for R1-based electron paramagnetic resonance oxygen imaging.

Authors:  Boris Epel; Howard J Halpern
Journal:  J Magn Reson       Date:  2015-03-07       Impact factor: 2.229

Review 6.  Theory, instrumentation, and applications of electron paramagnetic resonance oximetry.

Authors:  Rizwan Ahmad; Periannan Kuppusamy
Journal:  Chem Rev       Date:  2010-05-12       Impact factor: 60.622

7.  Dual-function pH and oxygen phosphonated trityl probe.

Authors:  Andrey A Bobko; Ilirian Dhimitruka; Denis A Komarov; Valery V Khramtsov
Journal:  Anal Chem       Date:  2012-06-27       Impact factor: 6.986

8.  Fourier transform EPR spectroscopy of trityl radicals for multifunctional assessment of chemical microenvironment.

Authors:  Andrey A Bobko; Ilirian Dhimitruka; Jay L Zweier; Valery V Khramtsov
Journal:  Angew Chem Int Ed Engl       Date:  2014-02-02       Impact factor: 15.336

9.  Electron spin resonance studies of trityl OX063 at a concentration optimal for DNP.

Authors:  Lloyd Lumata; Zoltan Kovacs; A Dean Sherry; Craig Malloy; Stephen Hill; Johan van Tol; Lu Yu; Likai Song; Matthew E Merritt
Journal:  Phys Chem Chem Phys       Date:  2013-06-28       Impact factor: 3.676

10.  Low-field paramagnetic resonance imaging of tumor oxygenation and glycolytic activity in mice.

Authors:  Shingo Matsumoto; Fuminori Hyodo; Sankaran Subramanian; Nallathamby Devasahayam; Jeeva Munasinghe; Emi Hyodo; Chandramouli Gadisetti; John A Cook; James B Mitchell; Murali C Krishna
Journal:  J Clin Invest       Date:  2008-05       Impact factor: 14.808

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