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Zero-Field Nuclear Magnetic Resonance of Chemically Exchanging Systems. Nature Communications. 10
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2019. Xenon Nmr-Study of a Nematic Liquid-Crystal Confined to Cylindrical Submicron Cavities. Journal of Physical Chemistry. 99(31):11989-11993.
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1995. 
Xenon NMR as a probe for microporous and mesoporous solids, polymers, liquid crystals, solutions, flames, proteins, imaging. Actualite Chimique. :16-34.
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2005. 
Xenon NMR as a probe for microporous and mesoporous solids, polymers, liquid crystals, solutions, flames, proteins, imaging. Actualite Chimique. :16-34.
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2005. 
Variable-Angle Correlation Spectroscopy in Solid-State Nuclear-Magnetic-Resonance. Journal of Chemical Physics. 97(7):4800-4808.
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1992. 
Variable-Angle 3-Dimensional Exchange Nuclear-Magnetic-Resonance Spectroscopy for the Study of Molecular-Motion in Complex Solids. Journal of the American Chemical Society. 115(11):4825-4829.
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1993. 
Temperature-controlled molecular depolarization gates in nuclear magnetic resonance. Angewandte Chemie-International Edition. 47(23):4316-4320.
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2008. 
Surface Study of Supported Metal Particles by Xe-129 Nmr. Physical Review Letters. 74(16):3277-3280.
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1995. 
Submillimeter-resolution magnetic resonance imaging at the Earth's magnetic field with an atomic magnetometer. Physical Review A. 78(1)
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2008. 
Study of xenon binding in cryptophane-A using laser-induced NMR polarization enhancement. Journal of the American Chemical Society. 121(14):3502-3512.
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1999. 
Study of the Aluminophosphates Alpo4-21 and Alpo4-25 by Al-27 Double-Rotation Nmr. Journal of the American Chemical Society. 113(11):4097-4101.
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1991. 
Study of Isotropic-Nematic-Solid Transitions in a Liquid-Crystal by Carbon-13-Proton Double-Resonance. Physical Review A. 10(3):946-949.
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1974. 
SQUID-detected MRI at 132 mu T with T(1)-weighted contrast established at 10 mu T-300 mT. Magnetic Resonance in Medicine. 53(1):9-14.
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2005. 
SQUID-detected microtesla MRI in the presence of metal. Journal of Magnetic Resonance. 179(1):146-151.
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2006. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
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2004. 
SQUID-detected liquid state NMR in microtesla fields. Journal of Physical Chemistry A. 108(6):957-963.
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2004. 
SQUID-detected in vivo MRI at microtesla magnetic fields. Ieee Transactions on Applied Superconductivity. 15(2):757-760.
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2005. 
SQUID detected NMR of laser-polarized xenon at 4.2 K and at frequencies down to 200 Hz. Chemical Physics Letters. 272(3-4):245-249.
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1997. 
Spin-Polarized Xe-129 Gas Imaging of Materials. Journal of Magnetic Resonance Series A. 115(1):127-130.
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1995. 
Spin coherence transfer in chemical transformations monitored by remote detection NMR. Analytical Chemistry. 79(7):2806-2811.
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2007. 
Some Developments in Nuclear Magnetic-Resonance of Solids. Science. 246(4926):71-77.
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1989. 
Solid-state NMR studies of the secondary structure of a mutant prion protein fragment of 55 residues that induces neurodegeneration. Proceedings of the National Academy of Sciences of the United States of America. 98(20):11686-11690.
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2001. 
A Si-29 Nuclear Magnetic-Resonance Study of Silicon-Aluminum Ordering in Leucite and Analcite. Physics and Chemistry of Minerals. 15(4):370-382.
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1988. 
Sensitivity enhancement by exchange mediated magnetization transfer of the xenon biosensor signal. Journal of Magnetic Resonance. 184(1):72-77.
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2007. 
Selective excitation in dipole coupled systems. Chemical Physics Letters. 357(3-4):241-248.
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2002. 