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A calibration curve was obtained by plotting the intensity of SERS signal of FC band at 1178 cm−1 versus the concentration of antigen.
The calibration curves were obtained by plotting the intensity of the SERS signal of symmetric NO2 stretching of DTNB at 1326 cm−1 vs. the protease concentration.
Results were presented by plotting the intensity of fluorescence at 450 nm which is the characteristic novel excitation maxima formed upon Th T binding.
The linear range for each PCR was established by plotting the intensity of the signal vs. the PCR cycle number.
The redistribution kinetics of chromatin-bound cohesin were analysed by plotting the intensity difference between the two areas over time.
The cell cycle distribution was established by plotting the intensity of the propidium iodide signal, which reflects the cellular DNA content.
Similar(47)
Spatial effects were identified by plotting the intensities by their position on the plates and putative artifacts were masked out (Table-S2).
At the same time, external standards of H2O2 mixed with 50 μg/mL HRP@HSNs were used to develop a calibration curve by plotting the fluorescence intensity versus the concentration of H2O2.
Briefly the principal m/z values of (C) and (G) were identified by considering the correlation coefficient criteria of > = 0.995 by plotting the normalized intensity (Meuleman et al. [2008]; Deininger et al. [2011]) of the m/z values versus concentrations.
The fluorescence intensity of the RITC-HRP@HSNs was measured by suspending the nanoparticles in 1 M NaOH, and the amount of encapsulated RITC-HRP was determined according to a calibration curve established by plotting the fluorescence intensity versus the concentration of native RITC-HRP under the same conditions (Additional file 1: Figure S2).
To determine the HRP loading capacity, RITC-HRP@HSNs were dissolved in 1 mL of NaOH (1 M) for 1 h, and the amount of the entrapped RITC-HRP was calculated from a calibration curve established by plotting the fluorescence intensity versus the concentration of RITC-HRP.
More suggestions(16)
by plotting the extent
by plotting the density
by plotting the intensities
by multiplying the intensity
by plotting the correlation
by tracking the intensity
by changing the intensity
by plotting the inhibition
by plotting the sample
by plotting the conductance
by plotting the seduction
by reducing the intensity
by plotting the Δgmax
by plotting the absorbance
by plotting the deformation
by plotting the number
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