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Mass-based assay sensitivity is the concentration of anti-InO antibodies in human serum that will result in a signal equal to the plate cut point.
LoD was estimated from the calibration function for a signal equal to the net signal of blank and three times its standard deviation, while LoQ was estimated from the calibration function for a signal equal to the net signal of blank and ten times its standard deviation (EURACHEM [1998]; Miller and Miller [2000]).
Detection and quantification limits were defined as the lowest concentrations of a component that produces a signal equal to three and ten times of the standard deviation for a series of the blank solution.
Mass-based assay sensitivity was assessed using a purified goat antihuman IgG antibody and was determined as the antibody concentration that resulted in a signal equal to the plate cut point.
The saturation control is effectively performed in such a way that it increases the wanted average video level (from Figure 7) to make the PW of the signal equal to a predetermined reference level.
However, if the PW level drops below the PW saturation level as in, the overall control will enter the saturation control region, which will again increase the average video level to make the PW of the signal equal to.
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For the rotation center, the chirp rate of the signal equals to zero, due to y k = 0.
In order to illustrate the idea underneath the consensus scheme design in the proposed adaptation algorithm, we have plotted in Fig. 7, for one simulation run, the actual target perceivabilities of the nodes (represented by binary signals equal to 1 when the target is visible and to 0 otherwise), together with the corresponding values of γ i (t) used in (15).
The number of BrdU-positive EGL cells was estimated by automated determination of the number of pixels representing diaminobenzidine-positive nuclei as measured by signals equal to or greater than the average threshold range for the BrdU signal measured across several samples.
In terms of traditional electronic logic, our circuit therefore corresponds to a system that produces, by default, a "high", or "1", signal in the absence of any input signals equal to "1".
Looking at Figure 23, the enable signal is equal to unity for the th signal when.
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