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Current Opinion in Structural Biology|January 12, 2002
Dipolar couplings as a probe of molecular dynamics and structure in solutionJ R TolmanJournal of Magnetic Resonance. Series B|September 1, 1996
A quantitative J-correlation experiment for the accurate measurement of one-bond amide 15N-1H couplings in proteinsJ R Tolman, J H PrestegardJournal of the American Chemical Society|July 18, 2001
Cross-correlated chemical shift modulation: a signature of slow internal motions in proteinsD Früh, J R Tolman, G Bodenhausen, et al.Journal of Biomolecular NMR|December 8, 2010
An HNCO-based Pulse Scheme for the Measurement of 13Cα-1Hα One-bond Dipolar couplings in 15N, 13C Labeled ProteinsD Yang, J R Tolman, N K Goto, et al.Nature Structural Biology|April 1, 1997
NMR evidence for slow collective motions in cyanometmyoglobinJ R Tolman, J M Flanagan, M A Kennedy, et al.Proceedings of the National Academy of Sciences of the United States of America|September 26, 1995
Nuclear magnetic dipole interactions in field-oriented proteins: information for structure determination in solutionJ R Tolman, J M Flanagan, M A Kennedy, et al.Journal of the American Chemical Society|July 18, 2001
Structural and dynamic analysis of residual dipolar coupling data for proteinsJ R Tolman, H M Al-Hashimi, L E Kay, et al.Journal of Molecular Biology|February 2, 2000
Orienting domains in proteins using dipolar couplings measured by liquid-state NMR: differences in solution and crystal forms of maltodextrin binding protein loaded with beta-cyclodextrinN R Skrynnikov, N K Goto, D Yang, et al.Pageof 1