
Publications
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SQUID-detected liquid state NMR in microtesla fields. Journal of Physical Chemistry A. 108(6):957-963.
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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 magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
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2004. 
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 magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
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2004. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
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2004. 
Three-dimensional phase-encoded chemical shift MRI in the presence of inhomogeneous fields. Proceedings of the National Academy of Sciences of the United States of America. 101(24):8845-8847.
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2004. 
Variable angle spinning (VAS) NMR study of solvent effects in liquid crystalline solutions of C-13-iodomethane. Chemical Physics Letters. 399(1-3):196-199.
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2004. 
High-resolution NMR spectroscopy with a portable single-sided sensor. Science. 308(5726):1279-1279.
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2005. 
High-resolution nuclear magnetic resonance spectroscopy of biological tissues using projected magic angle spinning. Magnetic Resonance in Medicine. 54(2):253-257.
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2005. 
Microfluidic gas-flow profiling using remote-detection NMR. Proceedings of the National Academy of Sciences of the United States of America. 102(42):14960-14963.
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2005. 
NMR analysis on microfluidic devices by remote detection. Analytical Chemistry. 77(24):8109-8114.
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2005. 
NMR in rotating magnetic fields: magic-angle field spinning. Magnetic Resonance Imaging. 23(2):295-299.
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2005. 
NMR in rotating magnetic fields: magic-angle field spinning. Magnetic Resonance Imaging. 23(2):295-299.
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2005. 
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 in vivo MRI at microtesla magnetic fields. Ieee Transactions on Applied Superconductivity. 15(2):757-760.
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2005. 
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 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. 
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. 
Zero- to low-field MRI with averaging of concomitant gradient fields. Proceedings of the National Academy of Sciences of the United States of America. 102(6):1840-1842.
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2005. 
Auxiliary probe design adaptable to existing probes for remote detection NMR, MRI, and time-of-flight tracing. Journal of Magnetic Resonance. 182(2):260-272.
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2006. 
Solid-state NMR structural studies of the fibril form of a mutant mouse prion peptide PrP89-143(P101L). Solid State Nuclear Magnetic Resonance. 29(1-3):183-190.
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2006. 
SQUID-detected microtesla MRI in the presence of metal. Journal of Magnetic Resonance. 179(1):146-151.
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2006. 
SQUID-detected microtesla MRI in the presence of metal. Journal of Magnetic Resonance. 179(1):146-151.
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2006. 