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1 FIA can be adoptively transferred with either plasma or
4 by experiments with flow injection analysis (FIA) and gradient reversed-phase high performance liquid
6 measurements under flow-injection analysis (FIA) conditions were selected to transduce the 6TG recog
10 n was injected in a flow injection analysis (FIA) manifold, accommodating the chemiluminogenic oxidat
11 adapts an existing flow injection analysis (FIA) methodology for low-level trace Fe determinations w
12 biosensor worked in flow injection analysis (FIA) mode and was developed for simultaneous monitoring
14 ection was used for flow injection analysis (FIA) of multiple analytes at both Au and Pt microwire wo
15 minary results from flow injection analysis (FIA) suggest that the new interface does not introduce a
16 nd highly sensitive flow injection analysis (FIA) system coupled to both spectrophotometric and elect
20 ng our standardized flow injection analysis (FIA) technique with colorimetric detection technique emp
22 experiments and by flow injection analysis (FIA) with amperometric detection monitoring the response
25 nally quantified by flow injection analysis (FIA)-ICPMS serve as internal standard in nanoHPLC-ESI-MS
27 application is demonstrated by both HPLC and FIA to evaluate the creatinine concentration in a urine
30 It is expected that this novel autosampling FIA/APCI-MS system can be used in quantitative real-time
31 pproximately 2-130 times higher than APCI by FIA and was approximately 2.6-530 times higher than APCI
34 on under flow-injection analysis conditions (FIA) determined neopterin in the concentration range of
35 optimal extraction and labeling conditions, FIA detection showed the limit of detection (at a signal
36 tions, we created an automated, customizable FIA system capable of operating at a range of flow rates
37 sis approach with electrochemical detection (FIA-EC) is utilized, in conjunction with a coplanar boro
39 veloped biosensor confirm that the developed FIA-EQCN biosensor could be very effective for low-level
41 electrochemical flow injection analysis (EC-FIA) is used to probe ion partitioning in to and out of
44 ge make it uniquely suited as a detector for FIA, in that it can rapidly record the whole near-IR abs
45 tector can serve as a universal detector for FIA; as a consequence, applications of the FIA technique
46 e same membrane detector can be employed for FIA detection of both polycations at levels >/=10 mug/mL
48 ction assays (Sofia fluorescent immunoassay [FIA] and Veritor) yield objective results, which are pot
50 the evidence that has led to our interest in FIA, evidence of its potential benefit in vaccines again
54 ughput to flow injection analysis-tandem MS (FIA-MS/MS) but with greater selectivity as required for
56 s proof of a concept paper introducing a new FIA approach, Magnetically-Assisted Transport Evanescent
57 togenic in mice and that the pathogenesis of FIA is mediated by both autoantibodies and fibrinogen-re
58 Using this system together with an optional FIA solvent modifier, e.g., 0.05% (v/v) isopropylamine,
61 h electrospray ionization mass spectrometry (FIA-ESI-MS).We used series dilutions of HL-60 cell extra
62 ssure chemical ionization mass spectrometry (FIA/APCI-MS) system, consisting of a 1 muL automatic int
65 sensitivity was attained when combining the FIA with chronoamperometric detection, resulting in limi
67 The superior analytical capability of the FIA system allows quantifying phenols and monitoring phe
69 r FIA; as a consequence, applications of the FIA techniques can be expanded to other areas which are
72 bration methods makes it possible to use the FIA, for the first time, for such applications as the si
73 ibrary construction were performed using the FIA system, and results showed a highly robust and repro
75 erve the advantages of current approaches to FIAs while attempting to address some of the drawbacks.
76 the selective receptors and PM applied under FIA conditions, the developed procedure offered an alter
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