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1 ioxidant, allowing for the construction of a calibration curve.
2 rformed well, as assessed by the c-index and calibration curve.
3 recombinant galectin-3 protein to generate a calibration curve.
4 lculated "by difference" from the scattering calibration curve.
5  analytical chemistry to select the adequate calibration curve.
6  selection of the adequate model used as the calibration curve.
7 ed, species-specific specimens for forming a calibration curve.
8 e, direct quantification without requiring a calibration curve.
9 d R(adj)(2) for the selection of an adequate calibration curve.
10  statistical criteria to select the adequate calibration curve.
11 tial location by reference to the respective calibration curve.
12 f each target protein is determined from the calibration curve.
13 n the gain of a nucleic acid peak and an RNA calibration curve.
14  area ratio obtained to an on-chip generated calibration curve.
15 erfacial energy through a readily achievable calibration curve.
16  lambda Hind III digest DNA to obtain a size calibration curve.
17 ectrometry-based assay utilising a universal calibration curve.
18  use of calibrants, internal standards, or a calibration curve.
19 two alcohols without a priori knowledge of a calibration curve.
20 d dose to the blood agreed with our in vitro calibration curve.
21 nts of sunitib, as determined by an averaged calibration curve.
22 f the peak maximum) leading to any number of calibration curves.
23  which eliminated the need for predetermined calibration curves.
24  based on isotopic ratios and do not involve calibration curves.
25 ly-Leu-Pro-Gly-Lys was selected to construct calibration curves.
26  an internal standard combined with external calibration curves.
27  (AA) and uric acid, consisting of 2 s order calibration curves.
28 ischarge time, rank probability scoring, and calibration curves.
29 -inhibited) and active BChE from established calibration curves.
30 allows for quantitative assessments based on calibration curves.
31 tal analysis stage, requiring matrix-matched calibration curves.
32 coside and kaempferol) were quantified using calibration curves.
33 erted into concentration values by preloaded calibration curves.
34 alth Index by increasing the accuracy of the calibration curves.
35 hin the 2 x 2 array were monitored to create calibration curves.
36 G-quadruplex TBA aptasensor with good linear calibration curve, accuracy, precision, and recovery was
37              For all analytes, neat standard calibration curves, after correction for matrix effect w
38                                  Finally, ee calibration curves allowed the determination of the ee o
39 e forward reaction assay by using an ex-situ calibration curve, allowing ADK catalyzed reaction rates
40 n ranging from 1-6g/L (yielding R(2)=0.98 in calibration curves) along with aPTT from frequency and d
41 ment between such an experimental, empirical calibration curve and a synthetically generated one, on
42 omatographic run, with the generation of the calibration curve and absolute quantitation of each anal
43 ntext of uncertainty in the radiocarbon date calibration curve and archaeological sampling.
44 eptide IGNIS kit which establishes a 6-point calibration curve and determines the biomarker concentra
45  on extraction efficiency, as well as linear calibration curve and limit of detection.
46 es between lipid abundances estimated by the calibration curve and measured by gas chromatography wer
47 39)Ar ages for refining both the radiocarbon calibration curve and the Late Pleistocene time-scale at
48 ned spectrophotometrically using an external calibration curve and values determined using a standard
49   The impact of the chemical reaction on the calibration curves and apparent selectivity of ISE is di
50  for rapid ee screening because the need for calibration curves and enantiomerically enriched samples
51 problematic: because of the non-linearity of calibration curves and error heteroscedasticity, the neg
52                                              Calibration curves and relative response factors (includ
53   We used pure MMC (Medisca Inc) to generate calibration curves and sulfanilamide as an internal stan
54 NaCl (0.025-3.5%) were used to construct the calibration curves and to determine the detection limits
55 commercial HMO standards were used to create calibration curves and were used to determine a universa
56 tion of free hemoglobin, based on a built-in calibration curve, and reports the patient's hemolysis l
57    Discrimination using Kaplan-Meier curves, calibration curves, and bootstrap cross-validation revea
58 electrochemical response, sensitivity of the calibration curves, and limit of detection was studied.
59                                 Also, sensor calibration curves are impacted by the transducer choice
60                                              Calibration curves are linear up to 10-15mg/L Cu.
61 stimates must account for uncertainty in the calibration curve as well as uncertainty in the target m
62                   The results showed that Ti calibration curve at 390.11nm provides successful determ
63                                      We show calibration curves at the femtomolar level for cobalt, n
64     Despite the experimental difficulties, a calibration curve based on equilibria taking place in th
65    In analysis of cell culture media, linear calibration curves based on SEC-FD peak height versus sE
66 fferent volumes (5 to 25 muL) to construct a calibration curve between the blood volume and the exten
67 anions allow us to construct a semiempirical calibration curve between the changes in the nu(C identi
68 t rely on calibrants, internal standards, or calibration curves but, rather, leverages the relationsh
69 ity to matrix effects seen when using, e.g., calibration curves by employing the mathematical framewo
70 he reaction was used for the construction of calibration curves by use of reference solutions.
71                                          The calibration curve can clearly differentiate varying biom
72                                         This calibration curve can now be used to date human archeolo
73 e atomic number of reference materials via a calibration curve can reveal valuable information on the
74 corbic acid to the media improved stability, calibration curves, coefficients of correlation, accurac
75 ygen concentration at the mitochondria using calibration curves collected at 37 degrees C for the pep
76 cellent linearity was observed over standard calibration curve concentration ranges of 3 orders of ma
77                                              Calibration curves consisting of the fluorescence change
78 k/m) of 1.14 mug L(-1) was obtained from the calibration curve constructed in the range of 4-450 mug
79                                          The calibration curves constructed for each analyte had an R
80 and elemental concentrations calculated from calibration curves constructed using four National Insti
81         Multiple reaction monitoring assays, calibration curve construction, and regression analysis
82                     The chromatic aberration calibration curve converted these depths into peak emiss
83 gesting that the labeled amino acid standard calibration curve could be used to determine the total c
84 determined using repeatability, recovery and calibration curves data for each pesticide.
85 determined using repeatability, recovery and calibration curves data for each pesticide.
86            For the optimized conditions, the calibration curves demonstrated a near zero intercept, t
87              The quantification was based on calibration curves drawn using synthesised purified pept
88                                            A calibration curve established from the analysis of a mix
89                                          The calibration curve exhibited a linear range between 0.02
90                                          The calibration curves exhibited linear relationship between
91                                          The calibration curves fitted well.
92  immunoassay data involves estimation of the calibration curve followed by inversion of the calibrati
93 e to the blood and compared with an in vitro calibration curve for (131)I and (177)Lu established pre
94 e five photodiodes produces a linear optical calibration curve for 5-carboxyl-tetramethylrhodamine fr
95  is consistent with our previously published calibration curve for a single species of silk (Bombyx m
96                                          The calibration curve for chlorpyriphos and prophenofos was
97                                            A calibration curve for CT detection has been obtained dis
98 ive colorimetric assay tests and establish a calibration curve for detection of glucose and nitrite.
99                                          The calibration curve for GLB was linear at 300 nm.
100  150 to ~10,000 years were used to develop a calibration curve for human bone.
101                                     A linear calibration curve for oxygen reduction was achieved with
102                Under optimized condition the calibration curve for PSA concentration was linear up to
103                                            A calibration curve for S(2-) ion estimation has been cons
104                                          The calibration curve for S3P was prepared with concentratio
105 bels, and was necessary for forming a linear calibration curve for the biosensor.
106 the construction of a robust field-frequency calibration curve for the C horizontal lineO vibration.
107 the dissociation phase and leads to a linear calibration curve for the concentrations over the tested
108 rified EGFP molecules in vitro to generate a calibration curve for the copy number of GFP-fusion prot
109                                     A linear calibration curve for the coulometric cell with valinomy
110                                          The calibration curve for the detection of As(3+) had a dyna
111 al standard into the plasma sample, a linear calibration curve for the drugs was obtained from the li
112                                          The calibration curve for VEGF165 determination was linear o
113 on chromatography, this results in identical calibration curves for all strong acid anions, obviating
114                                 Furthermore, calibration curves for each analyte were constructed and
115 including the necessity to generate separate calibration curves for each biomarker.
116 tion of stereoisomers accurately modeled the calibration curves for enantiomeric excess (ee).
117                    The good linearity of the calibration curves for PBS and lysate solutions at low S
118      The immunoassay was utilized to produce calibration curves for quantifying alpha-l-fucosidase co
119  analyzers have relied almost exclusively on calibration curves for sample quantitation, which can be
120  the protein-nanoparticle conjugates using a calibration curve from the CD spectra.
121                                 Linearity of calibration curves from 5.0 to 25 ng muL(-1), 25 to 250
122                                              Calibration curves from quantifications of in vitro cont
123 correlated to composition through the use of calibration curves from standard samples.
124 quantitation to be achieved with an external calibration curve generated from standards containing th
125                                          The calibration curve had a linear relationship with y = 0.0
126            The spectroelectrochemical sensor calibration curve had a range of 5 x 10(-9) to 1 x 10(-6
127                                            A calibration curve has been established from 0.01 to 0.1
128 ric acid concentration is known and separate calibration curves have been made for all possible acid
129                        Furthermore, a linear calibration curve in the glucose concentration range of
130 ne separation within <3 min, defining linear calibration curves in the range of 0.10-5.0 mmol L(-1).
131                                       Linear calibration curves in the range of 10-125muM were obtain
132            The PSA calibrants used to create calibration curves in these assays are typically purifie
133  values of specificity, than the TNM system; calibration curves indicated no deviation from the refer
134  mammals (including human) were added to the calibration curve, indicating the importance of using we
135 ematic investigation, it could be shown that calibration curves injected a few days after or before t
136          The midpoint on the standard matrix calibration curve is 80 microg/kg, half the current regu
137                          Importantly, the pH calibration curve is independent of the probe concentrat
138  versus log canalyte (x-axis) potentiometric calibration curve is not linear.
139                             The slope of the calibration curve is preserved after the short-circuit t
140                                  A family of calibration curves is first generated by measurements of
141 quantified via either SAM or MSD or simply a calibration curve, is of great importance for the constr
142 assessment, assay characterization including calibration curves, limits of detection (LOD) and quanti
143 enolics was achieved in 25 min with standard calibration curves linear over the concentration range f
144 t improvements in signal reproducibility and calibration curve linearity.
145                                              Calibration curves, linking the diffusion coefficient of
146  DNA only, which is also calculated by a DNA calibration curve made by the same CE instrument.
147 sample quantity needed for ELISA (a 10 point calibration curve measured in triplicate required 36 muL
148 g, Ca, Na and K) through LIBS was done using calibration curve method in which all calibration curve
149 s per plate run, in the standard addition or calibration curve mode, respectively.
150 phy, and the moles of H(2) was determined by calibration curves obtained from a series of known conce
151 rformances such as, for example, R(2) of the calibration curve of 0.98 and 0.99 for proteins and smal
152 (M)(app)) derived from an L-arginine (L-Arg) calibration curve of 1.27 +/- 0.29 mM.
153                                            A calibration curve of a mixture of 17 dansyl-labeled amin
154                          Finally, a reliable calibration curve of ABCB1 was obtained with an experime
155                                            A calibration curve of absorbance (at 730 nm) vs. [PA] is
156 y selected RPLC column is used to generate a calibration curve of CPC detection efficiency (DE) as a
157  column resulted in a baseline separation, a calibration curve of excellent linearity and a low limit
158                Under optimal conditions, the calibration curve of glucose sample was linear between 0
159                                          The calibration curve of lactose using optimized parameters
160 ological range 6.5-7.6 to construct a linear calibration curve of log(CEST104 ppm/CEST64 ppm) versus
161                                      For the calibration curve of monacolin K (lactone form), a linea
162                                            A calibration curve of PHEMA amplification for CT detectio
163 (-7) % sodium dodecyl sulfate and pH 7.9), a calibration curve of quantification (R(2) = 0.90) was ob
164                     Unlike a FET sensor, the calibration curve of the BJT sensor is independent of ap
165                                          The calibration curve of the chMB for detecting single base
166                                   The linear calibration curve of the concentration of glutamate vers
167                            Based on a linear calibration curve of the SERS characteristic peak intens
168                                              Calibration curves of %B/B0 vs. OTA concentration in PBS
169                                          The calibration curves of dependence of the biosensor system
170                                 Furthermore, calibration curves of higher quality are obtained, dynam
171 , we tested their application for generating calibration curves of standard peptides with alpha-cyano
172 ,app), obtained from the creatinine and urea calibration curves, of 0.163 mM for creatinine deaminase
173 ion, high precision and accuracy, and linear calibration curve on measured level range.
174                                              Calibration curves on standard samples, MS/MS transition
175 , is a hybrid between empirical methods like calibration curves or chemometrics and the theoretical c
176 0.3 mol %, or better, without the use of any calibration curves or correction factors.
177                                           No calibration curves or measurements of compound masses/al
178 entified and quantitated on the basis of the calibration curve over the range of low ppm to over 100
179 strated by comparing the slope values of the calibration curves (p < 0.05, from a t-test).
180                                          The calibration curves produced correlation coefficients wit
181 hape of the SPR dip) and of the slope of the calibration curve provides a rapid and effective procedu
182 a detection limit of 6x10(-12) M target DNA (calibration curve r(2)=0.98).
183                                     A linear calibration curve (r(2)=0.985) was observed in the nitri
184 e biosensor was 30s, the linear range of the calibration curve (R(2)=0.9993) was 8-130 muM and the se
185 ug kg(-1), were used to build the analytical calibration curve (r=0.996).
186 -10% (n=6) for CML and CEL respectively and, calibration curves (R(2)>0.9985) were attained.
187 d is simple, fast (<12.0min), present linear calibration curves (r(2)=0.995), and relative standard d
188      We calculated MMC concentration using a calibration curve (range, 0.3-0.5 mg/mL) generated by di
189 layed good figures of merits with analytical calibration curve ranging from 1 to 120 mug L(-1) for co
190 xtraction steps, the method yielded a linear calibration curve ranging from 1.0 to 500mugL(-1) with a
191 correlation coefficient of r(2) > 0.998) for calibration curves ranging from 100 fg/muL to 1000 pg/mu
192 al well characterized analytes, we construct calibration curves relating effective mobility and carri
193 -1) along the nitrogen depletion period, and calibration curves relating signal intensity and cellula
194                                              Calibration curves relating the signal intensity to the
195 ions to the uncertainty budget came from the calibration curves, repeatability and recovery.
196 mL(-1) and 0.005-100ngmL(-1) for DPV and EIS calibration curves, respectively.
197 eties) were used to construct multiple-point calibration curves, resulting in accurate and precise qu
198                                          The calibration curves show that signal intensity at 2845-31
199 bones such as bison, whale, llama, etc., the calibration curve showed a slower rate of racemization w
200                                              Calibration curves showed adequate calibration (judged b
201                             The matrix match calibration curves showed good linearity (r0.994) over a
202                Under optimum conditions, the calibration curves showed high levels of linearity (R(2)
203                        Employing AdSSWV, the calibration curves showed linear response ranging betwee
204                                          The calibration curves showed perfect linearity in water and
205                                              Calibration curves showed that Acute Physiology and Chro
206  using calibration curve method in which all calibration curve shows good linearity (r>0.95).
207 the relative standard deviation (RSD) of the calibration curve slope (n=12), for inter-day and intra-
208 ieved over a wide concentration range with a calibration curve spanning 7 orders of magnitude and LOD
209                                       With a calibration curve taking into account the CCS dependence
210 ELAC) for the white light source to generate calibration curves that relate the image grayscales to m
211                            With the use of a calibration curve, the amount of POPA generated during t
212 dices, delineate the necessity of creating a calibration curve to adjust the given NTA particle numbe
213 e whole quantification process including the calibration curve to be performed in less than 4 h, with
214 ment tool was demonstrated by establishing a calibration curve to relate % HbA1c, a useful value for
215  subsequently analyzed for the generation of calibration curves to quantify unknown tissue section sa
216 ins with verified purities were utilized for calibration curves, to prevent the quantitative biases t
217 resulting enzyme electrode presents a linear calibration curve toward glucose in solution in the conc
218 t impact on the concentrations reported with calibration curves using incorrect weighting factors as
219  cells located in valleys were compared with calibration curves using known broadbeam synchrotron X-r
220 ication; (iii) it is beneficial to construct calibration curves using standard proteins of verified c
221        The linear concentration range of the calibration curve was 0-10.0 ng mL(-1) (r(2)=0.999).
222                                     When the calibration curve was applied on the lipid quantificatio
223                                          The calibration curve was built using C1Inh standard (thresh
224                                            A calibration curve was constructed on the basis of the su
225                                            A calibration curve was created by measuring the reaction
226                                     A linear calibration curve was established after log/log transfor
227                                          The calibration curve was established between 1x10(1) and 1x
228         A five-parameter logistic regression calibration curve was established between fluorescence a
229                                            A calibration curve was established for viscosity as a fun
230                                          The calibration curve was found linear over a wide linear dy
231                                            A calibration curve was generated from mixtures of a phosp
232 in the rhizosphere of experimental plants, a calibration curve was generated that gave the nitrate co
233 Under the optimized conditions, the obtained calibration curve was highly linear in the range of 1-25
234                                          The calibration curve was linear in the concentration ranges
235                                          The calibration curve was linear in the range 0.5-10mgl(-1).
236                                          The calibration curve was linear within the range of 4.0-175
237 y experiments, and a collision cross section calibration curve was made for the traveling wave ion mo
238  optimum chromatographic conditions standard calibration curve was measured with good linearity - cor
239  directly injected in the LC setup; a linear calibration curve was obtained between peak area and ana
240                                          The calibration curve was obtained by differential pulse vol
241  calibration, and partial least square (PLS) calibration curve was obtained by evaluating the whole s
242                                              Calibration curve was obtained by following Ti emissions
243                                            A calibration curve was obtained by plotting the intensity
244                                     A linear calibration curve was obtained from 0.040 to 1.30molL(-1
245                                       Linear calibration curve was obtained from 1.25x10(-7) to 1.00x
246                                       Linear calibration curve was obtained from 2.5x10(-8) to 7.5x10
247                                In this work, calibration curve was obtained from the decrease of DPV
248                                            A calibration curve was obtained with a linear range of 0.
249 g sensor response, were optimized and then a calibration curve was plotted.
250                   A food toxin (domoic acid) calibration curve was produced, with %CVs ranging from 2
251                                This external calibration curve was then used to determine the quantit
252 process efficiency, accuracy, precision, and calibration curve was underscored by calculations perfor
253                                          The calibration curve was used to accurately measure the per
254                                          The calibration curve was used to estimate the blood volume
255                        On the basis of these calibration curves, we demonstrate the extraction of ful
256 f quantification (LOQs) and linearity of the calibration curve were documented under (i) optimized IC
257 alculated limits of detection (LOD) based on calibration curves were 1.42, 1.00, and 1.34 ng/mL, resp
258                               Matrix-matched calibration curves were applied and correlation coeffici
259                                              Calibration curves were built using both internal and ex
260                               Matrix-matched calibration curves were established and limits of quanti
261                               Matrix-matched calibration curves were established for both methods usi
262      The oxidase-modified nanorods and their calibration curves were finally used to determine substr
263                                              Calibration curves were generated and R(2)>0.99 was foun
264                     Reproducible, log-linear calibration curves were generated for each metal, with m
265                                              Calibration curves were generated in dyed hair matrixes
266                    During method validation, calibration curves were linear (r>/=0.99), within a rang
267                                              Calibration curves were linear (R(2)>0.996) at the teste
268                                              Calibration curves were linear (R(2)0.991) within a wide
269                                          The calibration curves were linear at the tested ranges (R=0
270                                              Calibration curves were linear between 0.01 and 1.61 mM
271                              Field-generated calibration curves were linear for injected TCE masses o
272                                          The calibration curves were linear in the range of 20-300 ng
273       Using the optimized sandwich bioassay, calibration curves were made with series of IFX concentr
274 lin G (hIgG) antibody were also studied, and calibration curves were obtained by subtraction of the r
275                                       Linear calibration curves were obtained for all analytes from 5
276                                       Linear calibration curves were obtained for analyte concentrati
277                                       Linear calibration curves were obtained in the concentration ra
278 theoretical treatment presented here, linear calibration curves were obtained in the exhaustive detec
279                                       Linear calibration curves were obtained over the calibration ra
280                                              Calibration curves were obtained with partial least squa
281                                     External calibration curves were prepared by micropipetting stand
282                                          Two calibration curves were prepared from the data obtained
283 ition of the various proteomes, if dedicated calibration curves were previously generated.
284                                    Protamine calibration curves were recorded at physiological concen
285                                         Mass calibration curves were used since the proposed system a
286                               Matrix matched calibration curves were used to determine Fusarium toxin
287                                          The calibration curves were used to evaluate the sensor's mu
288                                          The calibration curves were used to quantify the activity al
289                                          The calibration curve which was plotted by the variation of
290 red from fluorescence signals using a linear calibration curve, which achieved a goodness of fit (R(2
291 e buffer and spiked serum samples provided a calibration curve with R(2) values of 0.97 (n=27) and 0.
292 paration of poly(8:2 FTAC-co-HDA) standards, calibration curves with coefficient of determinations (R
293 e spiked in aCSF is approximately 1 muM, and calibration curves with internal standards can achieve a
294 t weighting factors for linear and quadratic calibration curves with least-squares regression algorit
295 he method produced the expected shape of the calibration curves with limits of detection of 0.6 and 5
296                 Each approach yielded linear calibration curves with R(2) values between 0.98-0.99 fo
297 ion of morphine, noscapine and heroin yields calibration curves with the following characteristics; l
298 other quantitative analysis techniques using calibration curves with weighted least-squares regressio
299 nverted to concentrations of product using a calibration curve, with a detection limit of 1.2 muM of
300                         The linearity of the calibration curves yielded the R(2)0.9993.

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