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Mass action models are biochemically detailed kinetic models that typically represent interactions between molecular species in the signaling network as ordinary differential equations (ODEs) and require selection of parameter values for concentrations of species in the network and rate constants controlling protein-protein associations [23].
Three-parameter mass action models can and should replace the 3-parameter Hill model.
Network-based models are natural generalizations of stochastic mass action models to stochastic dynamics on arbitrary interaction networks.
We demonstrate that the robustness and signal response behaviour are largely preserved between the elementary mass action models (K2) and their respective steady state counterparts (K2_QSS).
To characterize the relationship between Hill cooperativity and k and K cooperativity, the Hill model was fitted to samples of various simulated mass action models.
Though the Hill model was useful in that it indicated that the mutual Michaelis-Menten submodel could be excluded from the space of mass action models, the advantages of mass action models, and averages thereof (Eq. 9), suggest that they are better final end products of enzymological research.
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A kinetic dispersive model, where the steric mass action model accounts for the adsorption is used to describe column performance.
A general rate model with temperature dependent diffusion was coupled to a pH- and temperature-dependent steric mass action model.
The calorimetric signals obtained were fitted to a mass action model description of aggregation using a previously reported analytical procedure (Patterson et al., Langmuir 13 (1997 22199).
Two alternative kinetic approaches are compared to Michaelis Menten-type kinetics: a S-System and a generalized mass action model, both based on Power-Law kinetics.
For both materials, predictions of multicomponent adsorption based on the steric mass action model were in good agreement with experimental results indicating that the different variants bind in competition with each other.
Related(19)
mass action systems
mass transport models
mass action kinetics
mass production models
mass action equilibriums
mass action equations
mass action dynamics
mass exchange models
mass action reactions
mass market models
mass action assumptions
mass fraction models
mass balance models
mass action rates
mass index models
mass reduction models
mass action forces
mass transfer models
mass action model
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