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Model-free analysis single field

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→‎References: Switched to a labelled section transclusion for the citations.
== References ==
*[*Clore et al., 1990] Clore, G. M., Szabo, A., Bax, A., Kay, L. E., Driscoll, P. C., and Gronenborn, A. M. (1990). Deviations from the simple 2-parameter model-free approach to the interpretation of N-15 nuclear magnetic-relaxation of proteins. ''J. Am. Chem. Soc.'', '''112'''(12), 4989-4991. (DOI [http{{#lst://dx.doi.org/10.1021/ja00168a070 10.1021/ja00168a070]).Citations|Clore90}}* [*d'Auvergne and Gooley, 2003] d'Auvergne, E. J. and Gooley, P. R. (2003). The use of model selection in the model-free analysis of protein dynamics. ''J. Biomol. NMR'', '''25'''(1), 25-39. (DOI [http{{#lst://dx.doi.org/10.1023/a:1021902006114 10.1023/a:1021902006114]).Citations|dAuvergneGooley03}}* [*d'Auvergne and Gooley, 2006] d'Auvergne, E. J. and Gooley, P. R. (2006). Model-free model elimination{{#lst: A new step in the model-free dynamic analysis of NMR relaxation data. ''J. Biomol. NMR'', '''35'''(2), 117-135. (DOI [http://dx.doi.org/10.1007/s10858-006-9007-z 10.1007/s10858-006-9007-z]).Citations|dAuvergneGooley06}}* [*d'Auvergne and Gooley, 2007] d'Auvergne, E. J. and Gooley, P. R. (2007). Set theory formulation of the model-free problem and the diffusion seeded model-free paradigm. ''Mol. BioSyst.'', '''3'''(7), 483-494. (DOI{{#lst: [http://dx.doi.org/10.1039/b702202f 10.1039/b702202f]).Citations|dAuvergneGooley07}}* [*d'Auvergne and Gooley, 2008a] d'Auvergne, E. J. and Gooley, P. R. (2008). Optimisation of NMR dynamic models I. Minimisation algorithms and their performance within the model-free and Brownian rotational diffusion spaces. ''J. Biomol. NMR'', '''40'''(2), 107-119. (DOI: [http{{#lst://dx.doi.org/10.1007/s10858-007-9214-2 10.1007/s10858-007-9214-2]).Citations|dAuvergneGooley08a}}* [*d'Auvergne and Gooley, 2008b] d'Auvergne, E. J. and Gooley, P. R. (2008). Optimisation of NMR dynamic models II. A new methodology for the dual optimisation of the model-free parameters and the Brownian rotational diffusion tensor. ''J. Biomol. NMR'', '''40'''(2), 121-133. (DOI: [http{{#lst://dx.doi.org/10.1007/s10858-007-9213-3 10.1007/s10858-007-9213-3]).Citations|dAuvergneGooley08b}}* [*Morin and Gagné, 2009] Morin, S. and Gagné, S. (2009). Simple tests for the validation of multiple field spin relaxation data. ''J. Biomol. NMR'', '''45''', 361-372. (DOI: [http{{#lst://dx.doi.org/10.1007/s10858-009-9381-4 10.1007/s10858-009-9381-4]).Citations|MorinGagné09}}* [*Orekhov et al., 1999] Orekhov, V. Y., Korzhnev, D. M., Diercks, T., Kessler, H., and Arseniev, A. S. (1999). H-1-N-15 NMR dynamic study of an isolated alpha-helical peptide (1-36)bacteriorhodopsin reveals the equilibrium helix-coil transitions. ''J. Biomol. NMR'', '''14'''(4), 345-356. (DOI{{#lst: [http://dx.doi.org/10.1023/a:1008356809071 10.1023/a:1008356809071]).Citations|Orekhov99}}* [*Schurr et al., 1994] Schurr, J. M., Babcock, H. P., and Fujimoto, B. S. (1994). A test of the model-free formulas. Effects of anisotropic rotational diffusion and dimerization. ''J. Magn. Reson. B'', '''105'''(3), 211-224. (DOI: [http{{#lst://dx.doi.org/10.1006/jmrb.1994.1127 10.1006/jmrb.1994.1127]).Citations|Schurr94}}* [*Tjandra et al., 1995] Tjandra, N., Wingfield, P., Stahl, S., and Bax, A. (1996). Anisotropic rotational diffusion of perdeuterated HIV protease from N-15 NMR relaxation measurements at two magnetic. ''J. Biomol. NMR'', '''8'''(3), 273-284. (DOI: [http{{#lst://dx.doi.org/10.1007/bf00410326 10.1007/bf00410326]). Citations|Tjandra95}}
<HarvardReferences />
== See also ==
[[Category:Model-free_analysis]]
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