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  1. 1.   Relative domain orientation of the L289K HIV-1 reverse transcriptase monomer
  2. Xi, Zhaoyong; Ilina, Tatiana V; Guerrero, Michel; Fan,Lixin; Sluis-Cremer, Nicolas; Wang,Yun-Xing; Ishima, Rieko
  3. Protein Science : a publication of the Protein Society. 2022, May; 31(5): e4307.
  1. 2.   Trafficking of a Dual-Modality Magnetic Resonance and Fluorescence Imaging Superparamagnetic Iron Oxide-Based Nanoprobe to Lymph Nodes
  2. Bumb, A.; Regino, C. A. S.; Egen, J. G.; Bernardo, M.; Dobson, P. J.; Germain, R. N.; Choyke, P. L.; Brechbiel, M. W.
  3. Molecular Imaging and Biology. 2011, Dec; 13(6): 1163-1172.
  1. 3.   An NMR strategy for fragment-based ligand screening utilizing a paramagnetic lanthanide probe
  2. Saio, T.; Ogura, K.; Shimizu, K.; Yokochi, M.; Burke, T. R.; Inagaki, F.
  3. Journal of Biomolecular Nmr. 2011, Nov; 51(3): 395-408.
  1. 4.   Molecular-Level Examination of Cu2+ Binding Structure for Amyloid Fibrils of 40-Residue Alzheimer's beta by Solid-State NMR Spectroscopy
  2. Parthasarathy, S.; Long, F.; Miller, Y.; Xiao, Y. L.; McElheny, D.; Thurber, K.; Ma, B. Y.; Nussinov, R.; Ishii, Y.
  3. Journal of the American Chemical Society. 2011, Mar; 133(10): 3390-3400.
  1. 5.   Magnetic resonance imaging of organic contrast agents in mice: capturing the whole-body redox landscape
  2. Davis, R. M.; Matsumoto, S.; Bernardo, M.; Sowers, A.; Matsumoto, K. I.; Krishna, M. C.; Mitchell, J. B.
  3. Free Radical Biology and Medicine. 2011, Feb; 50(3): 459-468.
  1. 6.   Continuous wave EPR oximetric imaging at 300 MHz using Radiofrequency power saturation effects
  2. Hama, Y.; Matsumoto, K. I.; Murugesan, R.; Subramanian, S.; Devasahayam, N.; Koscielniak, J. W.; Hyodo, F.; Cook, J. A.; Mitchell, J. B.; Krishna, M. C.
  3. Antioxidants & Redox Signaling. 2007, Oct; 9(10): 1709-1716.
  1. 7.   The potential of ferumoxytol nanoparticle magnetic resonance imaging, perfusion, and angiograpgy in central nervous system malignancy: A pilot study
  2. Neuwelt, E. A.; Varallyay, C. G.; Manninger, S.; Solymosi, D.; Haluska, M.; Hunt, M. A.; Nesbit, G.; Stevens, A.; Jerosch-Herold, M.; Jacobs, P. M.; Hoffman, J. M.
  3. Neurosurgery. 2007, Apr; 60(4): 601-611.
  1. 8.   Integration of digital signal processing technologies with pulsed electron paramagnetic resonance imaging
  2. Pursley, R. H.; Salem, G.; Devasahayam, N.; Subramanian, S.; Koscielniak, J.; Krishna, M. C.; Pohida, T. J.
  3. Journal of Magnetic Resonance. 2006, FEB; 178(2): 220-227.
  1. 9.   Absolute oxygen tension (pO(2)) muscle tissue as determined by in murine fatty and EPR
  2. Matsumoto, A.; Matsumoto, S.; Sowers, A. L.; Koscielniak, J. W.; Trigg, N. J.; Kuppusamy, P.; Mitchell, J. B.; Subramanian, S.; Krishna, M. C.; Matsumoto, K.
  3. Magnetic Resonance in Medicine. 2005, DEC; 54(6): 1530-1535.
  1. 10.   Improving the accuracy of NMR structures of large proteins using pseudocontact shifts as long-range restraints
  2. Gaponenko, V.; Sarma, S. P.; Altieri, A. S.; Horita, D. A.; Li, J.; Byrd, R. A.
  3. Journal of Biomolecular Nmr. 2004 28(3): 205-212.
  1. 11.   Mapping the effects of metal ion reduction and substrate analog binding to Fe-superoxide dismutase by NMR spectroscopy
  2. Vathyam, S.; Byrd, R. A.; Miller, A. F.
  3. Magnetic Resonance in Chemistry. 2000 38(7): 536-542.
  1. 12.   Assignment of the backbone resonances of oxidized Fe-superoxide dismutase, a 42 kDa paramagnet-containing enzyme
  2. Vathyam, S.; Byrd, R. A.; Miller, A. F.
  3. Journal of Biomolecular Nmr. 1999 14(3): 293-294.
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