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Progress in Nuclear Magnetic Resonance Spectroscopy|February 26, 2021
Covariance NMR: Theoretical concerns, practical considerations, contemporary applications and related techniquesDavid A SnyderThe Journal of Physical Chemistry. A|October 9, 2009
Generalized indirect covariance NMR formalism for establishment of multidimensional spin correlationsDavid A Snyder, Rafael BrüschweilerProteins|April 12, 2005
Clustering algorithms for identifying core atom sets and for assessing the precision of protein structure ensemblesDavid A Snyder, Gaetano T MontelioneJournal of Magnetic Resonance (San Diego, Calif. : 1997)|April 25, 2015
Analysis of ligand-protein exchange by Clustering of Ligand Diffusion Coefficient Pairs (CoLD-CoP)David A Snyder, Mihaela Chantova, Saadia ChaudhryJournal of Biomolecular NMR|September 19, 2007
Covariance NMR in higher dimensions: application to 4D NOESY spectroscopy of proteinsDavid A Snyder, Fengli Zhang, Rafael BrüschweilerBiomolecules|September 28, 2024
Application of CoLD-CoP to Detecting Competitively and Cooperatively Binding LigandsShiva V Patnala, Roberto Robles, David A SnyderMolecules (Basel, Switzerland)|April 3, 2021
Patterns in Protein Flexibility: A Comparison of NMR "Ensembles", MD Trajectories, and Crystallographic B-FactorsChristopher Reinknecht, Anthony Riga, Jasmin Rivera, et al.Proteins|August 13, 2018
Prediction of protein flexibility using a conformationally restrained contact mapRebecca Vera, Melissa Synsmir-Zizzamia, Sarah Ojinnaka, et al.The Journal of Chemical Physics|December 3, 2008
Z-matrix formalism for quantitative noise assessment of covariance nuclear magnetic resonance spectraDavid A Snyder, Arindam Ghosh, Fengli Zhang, et al.The Journal of Chemical Physics|February 13, 2008
Non-negative matrix factorization of two-dimensional NMR spectra: application to complex mixture analysisDavid A Snyder, Fengli Zhang, Steven L Robinette, et al.Pageof 2