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Imaging of nitroxides at 250MHz using rapid-scan electron paramagnetic resonance.


ABSTRACT: Projections for 2D spectral-spatial images were obtained by continuous wave and rapid-scan electron paramagnetic resonance using a bimodal cross-loop resonator at 251MHz. The phantom consisted of three 4mm tubes containing different (15)N,(2)H-substituted nitroxides. Rapid-scan and continuous wave images were obtained with 5min total acquisition times. For comparison, images also were obtained with 29s acquisition time for rapid scan and 15min for continuous wave. Relative to continuous wave projections obtained for the same data acquisition time, rapid-scan projections had significantly less low-frequency noise and substantially higher signal-to-noise at higher gradients. Because of the improved image quality for the same data acquisition time, linewidths could be determined more accurately from the rapid-scan images than from the continuous wave images.

SUBMITTER: Biller JR 

PROVIDER: S-EPMC4081024 | biostudies-literature | 2014 May

REPOSITORIES: biostudies-literature

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Imaging of nitroxides at 250MHz using rapid-scan electron paramagnetic resonance.

Biller Joshua R JR   Tseitlin Mark M   Quine Richard W RW   Rinard George A GA   Weismiller Hilary A HA   Elajaili Hanan H   Rosen Gerald M GM   Kao Joseph P Y JP   Eaton Sandra S SS   Eaton Gareth R GR  

Journal of magnetic resonance (San Diego, Calif. : 1997) 20140301


Projections for 2D spectral-spatial images were obtained by continuous wave and rapid-scan electron paramagnetic resonance using a bimodal cross-loop resonator at 251MHz. The phantom consisted of three 4mm tubes containing different (15)N,(2)H-substituted nitroxides. Rapid-scan and continuous wave images were obtained with 5min total acquisition times. For comparison, images also were obtained with 29s acquisition time for rapid scan and 15min for continuous wave. Relative to continuous wave pro  ...[more]

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