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Simulated annealing magnetic resonance

PJ.M. Folkers, G. M. Clore, P.C. Driscoll, Solution structure of recombinant hirudin and the Lys-47 glu mutant a nuclear magnetic resonance and hybrid distance geometry-dynamical simulated annealing study. Biochemistry, 28 (1989) 2601. [Pg.466]

R. E. Hoffman, G.C. Levy, Spectral deconvolution by simulated annealing. Journal of Magnetic Resonance, 83 (1989) 41,1. [Pg.466]

V. Smith, J. Kurhanewicz, T.L. James, Solvent-suppression, pulses. III. design using simulated-annealing optimization with in vitro and in vivo testing. Journal of Magnetic Resonance, 96 (1992) 345. [Pg.468]

F.H. Epstein, J. P. Mugler III, J.R. Brookeman, Optimization of parameter values for complex pulse sequences by simulated annealing application to 3D MP-RAGE imaging of the brain. Magnetic Resonance in Medicine, 31 (1994) 164. [Pg.470]

Lee, S.Y., Lee, J.H., Chang, H.J., Cho, J.M., Jung, J.W., and Lee, W. (1999). Solution structure of a sweet protein single-chain monellin determined by nuclear magnetic resonance and dynamical simulated annealing calculations. Biochemistry 38, 2340-2346. [Pg.235]

Holalt TA, Engstrom A, Kraulis PJ, Lindberg G, Bennich H. Jones TA. Gronenbom AM. Clore GM. The solution conformation of the antibacterial peptide cecropin A A nuclear magnetic resonance and dynamical simulated annealing study. Biochem 1988 27 7620-7629. [Pg.494]


See other pages where Simulated annealing magnetic resonance is mentioned: [Pg.1132]    [Pg.27]    [Pg.1132]    [Pg.202]    [Pg.223]    [Pg.505]   


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