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The capability of the attentional normalization model to account for both the attentional modulations and the stimulus interactions was demonstrated by fitting the responses of each neuron to the attentional measurements and the stimulus interaction measurements simultaneously to the model.
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Liquid holdup and axial dispersion coefficients for an upflow reactor are estimated by fitting the response curves after a step change of the tracer concentration at the inlet of a fixed bed operating at reaction conditions to the model predictions.
The dissociation constant for Aβ(1 16) was determined by fitting the response at the end of each of the association phases to a single-site binding isotherm.
The measurements were performed by fitting the response from three independent experiments.
For the latter the capacitance was estimated by fitting the response with an exponential and averaging over 4 trials.
Equilibrium dissociation constants (Kd) were determined by fitting the response as a function of the Xbra concentration.
A mixed model was fitted in ASReml 3.0 (VSN International 2009) by fitting the response variable (TYM or SGNC or SGNO) as a fixed effect and by fitting the line effects and effects due to repeated measurements as random effects.
Finally, by fitting the uniaxial responses obtained from the MD simulations with a standard constitutive model, we show that the barriers between the torsional states govern the small strain behaviour while the strength of the non-bonded interactions govern hardening.
The measurements were performed by fitting the averaged responses from three independent experiments.
Neuronal tuning width, tuning amplitude and tuning baseline were determined by fitting the neuronal responses with a wrapped Gaussian.
In this example, the exponent parameters that modify reserve capacity, ATP-linked, non-mitochondrial and proton leak (a, b, c and d) were obtained by fitting the bioenergetic responses of monocytes to various concentrations of HNE using an LDA to determine the BHI function that maximizes the contrast between two conditions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com