Introduction
\nClassical enzyme kinetics
\nClassical dose-response curves and the Hill coefficient
\nClassical association and dissociation kinetics and exponential fits
\nNumerical methods
\nPreparing the computer
\nInstallation of Octave for different platforms
\nInstallation of Linux
\nRunning the provided programs
\nData input and output
\nBinding equilibria
\nAnalytical and numerical solution for equilibrium binding to one site
\nEquilibrium binding to two or more sites.
\nEquilibrium binding to two or more conformational states
\nEquilibrium binding for oxygen to hemoglobin (MWC model)
\nEquilibrium binding of more than one ligand (e.g. agonist and inhibitor)
\nEnzyme kinetics as coupled equilibria
\nEnzyme kinetics with competitive or noncompetitive inhibitors
\nDose-response curves for receptor agonists and enzyme inhibitors
\nBinding kinetics
\nLigand binding kinetics of first and second order
\nNumerical solutions of differential equations
\nCalculation of true enzyme kinetics
\nDissociation by dilution and dissociation by competition (\"chase\")
\nStates and sites
\nLeast squares fit to experimental data
\nThe function lsqcurvefit
\nComparing correct binding curves with Hill equations
\nComparing real binding kinetics with current multi-exponential fits
\nFitting experimental data
\nCauses for errors
\nMulti-parameter fits
\nCorrelation of parameters
\nSelecting a model and minimizing the number of parameters
\nDegrees of freedom
\nGlobal Fits
\nSignificance of parameters in multi-parameter fits
\nComparing the two different approaches
\nModel independent versus model calculations
\nGlobal fit versus single fits
\nMake ends meet: Try to analyze reported data with new methods
\nDesigning experiments for complete analysis
\nAppendix
\nDescription of program files
\nSample data
\nComparing MATLAB and Octave code
\n Skryť popis- Nakladateľ: Springer, Berlin
- Kód:
- Rok vydania: 2016
- Jazyk: Angličtina
- Väzba: Měkká
- Počet strán: 149
- Šírka balenia: 15.5 cm
- Výška balenia: 23.5 cm
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