In the study of the inhibition of enzyme reactions the Michaelis-Menten model is extended to include two experimental variables and three or more parameters. We combine the three-parameter models for competitive and non competitive inhibition in a four-parameter model and use optimum design theory to find D-and Ds-optimum designs for discriminating between the models. These designs are compared with compound T-optimum designs which provide the most powerful tests for discrimination between models. A single design is found with high discrimination efficiency whichever model is true
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
A new graphical method is described for analyzing the results of multiple inhibition experiments. It...
A general model for enzyme kinetics with inhibition, the "mixed" inhibition model, simplifies to the...
A general model for enzyme kinetics with inhibition, the "mixed" inhibition model, simplifies to the...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
In this paper some results on the problem of computing optimal designs for discriminating between ri...
In this paper we present a new method for determining optimal designs for enzyme inhibition kinetic...
In this paper some results on the computation of optimal designs for discriminating between nonlinea...
A procedure is proposed for determining whether an inhibitor of an enzyme-catalyzed reaction is comp...
Enzyme inhibition studies are conducted to characterize enzymes and to examine drug-drug interaction...
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
A new graphical method is described for analyzing the results of multiple inhibition experiments. It...
A general model for enzyme kinetics with inhibition, the "mixed" inhibition model, simplifies to the...
A general model for enzyme kinetics with inhibition, the "mixed" inhibition model, simplifies to the...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
We find closed-form expressions for the D-optimum designs for three- and four-parameter nonlinear mo...
In this paper some results on the problem of computing optimal designs for discriminating between ri...
In this paper we present a new method for determining optimal designs for enzyme inhibition kinetic...
In this paper some results on the computation of optimal designs for discriminating between nonlinea...
A procedure is proposed for determining whether an inhibitor of an enzyme-catalyzed reaction is comp...
Enzyme inhibition studies are conducted to characterize enzymes and to examine drug-drug interaction...
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
The Michaelis-Menten model has and continues to be one of the most widely used models in many divers...
A new graphical method is described for analyzing the results of multiple inhibition experiments. It...