We demonstrate transport of hyperpolarized frozen 1-(13)C pyruvic acid from its site of production to a nearby facility, where a time series of (13)C images was acquired from the aqueous dissolution product. Transportability is tied to the hyperpolarization (HP) method we employ, which omits radical electron species used in other approaches that would otherwise relax away the HP before reaching the imaging center. In particular, we attained (13)C HP by 'brute-force', i.e., using only low temperature and high-field (e.g., T< approximately 2K and B approximately 14T) to pre-polarize protons to a large Boltzmann value ( approximately 0.4% (1)H polarization). After polarizing the neat, frozen sample, ejection quickly (20h) at reasonable conditions of 6K and 2T. Finally, it is possible to increase the overall enhancement near d-DNP levels (i.e., 10(2)-fold more) by polarizing below 100mK, where nanoparticle agents are known to hasten T1 buildup by 100-fold, and to yield very little impact on T1 losses at temperatures relevant to transport.
Hyperpolarized choline as an MR imaging molecular probe: feasibility of in vivo imaging in a rat model
From The DNP-NMR Blog:
Hyperpolarized choline as an MR imaging molecular probe: feasibility of in vivo imaging in a rat model
Friesen-Waldner, L.J., et al., Hyperpolarized choline as an MR imaging molecular probe: feasibility of in vivo imaging in a rat model. J Magn Reson Imaging, 2015. 41(4): p. 917-23.
http://www.ncbi.nlm.nih.gov/pubmed/24862837
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10-22-2015 03:29 AM
Brute-Force Hyperpolarization for NMR and MRI
From The DNP-NMR Blog:
Brute-Force Hyperpolarization for NMR and MRI
Hirsch, M.L., et al., Brute-Force Hyperpolarization for NMR and MRI. J Am Chem Soc, 2015. 137(26): p. 8428-34.
http://www.ncbi.nlm.nih.gov/pubmed/26098752
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09-05-2015 01:55 AM
Brute-Force Hyperpolarization for NMR and MRI
Brute-Force Hyperpolarization for NMR and MRI
Matthew L. Hirsch, Neal Kalechofsky, Avrum Belzer, Melanie Rosay and James G. Kempf
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/0/jacsat.ahead-of-print/jacs.5b01252/20150629/images/medium/ja-2015-01252r_0007.gif
Journal of the American Chemical Society
DOI: 10.1021/jacs.5b01252
http://feeds.feedburner.com/~ff/acs/jacsat?d=yIl2AUoC8zA
http://feeds.feedburner.com/~r/acs/jacsat/~4/j9sb5gEVc1k
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06-29-2015 07:21 PM
Hyperpolarization without persistent radicals for in vivo real-time metabolic imaging
From The DNP-NMR Blog:
Hyperpolarization without persistent radicals for in vivo real-time metabolic imaging
Eichhorn, T.R., et al., Hyperpolarization without persistent radicals for in vivo real-time metabolic imaging. Proc. Nat. Aca. Sci. USA, 2013. 110(45): p. 18064-18069.
http://www.pnas.org/content/110/45/18064.abstract
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07-28-2014 08:52 PM
[NMR paper] Recommendations of the wwPDB NMR Validation Task Force.
Recommendations of the wwPDB NMR Validation Task Force.
Recommendations of the wwPDB NMR Validation Task Force.
Structure. 2013 Sep 3;21(9):1563-70
Authors: Montelione GT, Nilges M, Bax A, Güntert P, Herrmann T, Richardson JS, Schwieters CD, Vranken WF, Vuister GW, Wishart DS, Berman HM, Kleywegt GJ, Markley JL
Abstract
As methods for analysis of biomolecular structure and dynamics using nuclear magnetic resonance spectroscopy (NMR) continue to advance, the resulting 3D structures, chemical shifts, and other NMR data are broadly impacting...
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09-10-2013 08:44 PM
[NMR paper] Design of a novel class of protein-based magnetic resonance imaging contrast agents for the molecular imaging of cancer biomarkers.
Design of a novel class of protein-based magnetic resonance imaging contrast agents for the molecular imaging of cancer biomarkers.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--media.wiley.com-assets-2250-98-WileyOnlineLibrary-Button_120x27px_FullText.gif Related Articles Design of a novel class of protein-based magnetic resonance imaging contrast agents for the molecular imaging of cancer biomarkers.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2013 Jan 17;
Authors: Xue S, Qiao J, Pu F, Cameron M, Yang JJ
Abstract
Magnetic...