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1 e (NADH) and hydrogen peroxide (H(2)O(2)) by flow injection analysis.
2 es were evaluated by chronoamperometry using flow injection analysis.
3 ic voltammetry, rotating disk electrode, and flow injection analysis.
4 t 100 samples can be measured per hour using flow injection analysis.
5 ingle islets of Langerhans was determined by flow injection analysis.
6 for a paper-based electrochemical system for flow-injection analysis.
7 nse up to 1.2 mM in batch-type and 2.0 mM in flow injection analysis and a detection limit of 10-20 m
8                   UHPLC, GC-MS/MS, LC-MS/MS, flow injection analysis and luminescence sensors determi
9 ) and allura red (AR) in candies by coupling flow injection analysis and multiple pulse amperometry w
10 -arabitol concentration was determined under flow-injection analysis and stagnant-solution binding co
11 ges of the electrode both in vitro (i.e., in flow-injection analysis) and in vivo (i.e., during a spr
12 described with applications toward sampling, flow injection analysis, and capillary separations.
13                                            A flow injection analysis approach with electrochemical de
14  detection system has been configured into a flow injection analysis array for simple adaptation to a
15 ce material and via intercalibration against flow injection analysis-chemiluminescence on Southern Oc
16 uit potential (OCP) based transduction under flow-injection analysis conditions (FIA) determined neop
17 c microgravimetry (PM) under both batch- and flow-injection analysis conditions was used.
18 metry (PM) measurements were performed under flow-injection analysis conditions.
19          In this study, a novel autosampling flow injection analysis coupled with an atmospheric pres
20  amount of cellular metabolites by utilizing flow injection analysis coupled with electrospray ioniza
21 ing resolution of overlapped HPLC-DAD peaks, flow injection analysis data, and batch reaction data me
22               In this paper, electrochemical flow injection analysis (EC-FIA) is used to probe ion pa
23  streptomycin residues in milk samples using flow injection analysis-electrochemical quartz crystal n
24 rization of analytes in applications such as flow injection analysis, electrophoresis, and chromatogr
25 tection of H2O2 in the 3D-printed channel by flow-injection analysis, exhibiting a detection limit of
26 is analysis is confirmed by experiments with flow injection analysis (FIA) and gradient reversed-phas
27 (AOTF) and its application as a detector for flow injection analysis (FIA) are reported.
28                              Under favorable flow injection analysis (FIA) conditions, the alkaloid a
29 etabolites via liquid chromatography (LC) or flow injection analysis (FIA) coupled to tandem mass spe
30 le extraction, fluorescent dye labeling, and flow injection analysis (FIA) detection.
31          Each ion solution was injected in a flow injection analysis (FIA) manifold, accommodating th
32                 This work adapts an existing flow injection analysis (FIA) methodology for low-level
33             The combined biosensor worked in flow injection analysis (FIA) mode and was developed for
34 stem as a superb tool to investigate flow in Flow Injection Analysis (FIA) models.
35          Amperometric detection was used for flow injection analysis (FIA) of multiple analytes at bo
36                     Preliminary results from flow injection analysis (FIA) suggest that the new inter
37 k presents an automated and highly sensitive flow injection analysis (FIA) system coupled to both spe
38 ying instrumental conditions is to utilize a flow injection analysis (FIA) system for rapid sample in
39 -steel pins as new low-cost electrodes for a flow injection analysis (FIA) system with electrochemica
40 r nitrate and nitrite using our standardized flow injection analysis (FIA) technique with colorimetri
41                                              Flow injection analysis (FIA) was used to investigate th
42 GCE by cyclic voltammetry experiments and by flow injection analysis (FIA) with amperometric detectio
43                                        Using flow injection analysis (FIA), a pH gradient is blended
44                                           In flow injection analysis (FIA), sensor 3 shows a Nernstia
45 CAT label which are externally quantified by flow injection analysis (FIA)-ICPMS serve as internal st
46 stereolithography, designed specifically for flow injection analysis (FIA).
47 y and alternating current measurements under flow-injection analysis (FIA) conditions were selected t
48 c membrane type pulstrodes as detectors in a flow-injection analysis (FIA) system is examined.
49                        An improved method of flow injection analysis for aqueous nitrite ion exploits
50                                              Flow injection analysis is used to demonstrate the sensi
51 hose obtained from applying the conventional flow-injection analysis method, based on the same type o
52                       The system operates in Flow Injection Analysis mode (FIA).
53 trations in the range from 3.3 to 16.6 mM in flow injection analysis mode.
54 ured in analytical experiments that included flow injection analysis MS, postcolumn addition LC-MS, a
55 s, i.e., lab-on-valve (LOV) and multisyringe flow injection analysis (MSFIA), with a selective resin
56 henating lab-on-valve (LOV) and multisyringe flow injection analysis (MSFIA).
57 volume samples is demonstrated by microscale flow injection analysis (muFIA) of Cr bound to human lun
58 Discovery Systems' Spectrum Collection using flow injection analysis of 384-well plates.
59                                              Flow injection analysis of dissolved gel spots by ICPMS
60 ode was used as an amperometric detector for flow injection analysis of insulin in pH 7.40 phosphate
61 d to monitor insulin in a flowing stream for flow injection analysis or for sensor-like monitoring.
62 nd detection limits that were similar to the flow injection analysis studies.
63                 Operational parameters for a flow injection analysis system (reagent pH, flow rate, s
64 cted using carbon-fiber microelectrodes in a flow injection analysis system and in brain slices.
65                          With a fluorometric flow injection analysis system harnessed to measure ammo
66                               A microfluidic flow injection analysis system has been designed and eva
67                                            A flow injection analysis system was used for the precise
68 Fish underway sampler and a modified reverse flow injection analysis system with a liquid waveguide c
69 bbreviated as EVALs) for implementation in a flow injection analysis system.
70 acid before the sample was injected into the flow injection analysis system.
71 then evaluated in a phosphate buffer using a flow injection analysis system.
72 d phase that is used with microcolumns and a flow injection analysis system.
73 itor dynamic chemical changes occurring in a flow injection analysis system.
74 pped with a 120 muL flow probe, coupled to a flow-injection analysis system, in full automation under
75                                              Flow injection analysis tandem mass spectrometry was use
76 d to provide comparable sample throughput to flow injection analysis-tandem MS (FIA-MS/MS) but with g
77  cores at sub-mug L(-1) levels by coupling a flow injection analysis technique with a fast ion chroma
78                                        Using flow injection analysis to minimize solid deposition, th
79 n seconds by diffusion/mixing that occurs in flow injection analysis, while analyte concentration mea
80  three different instrument operation modes: flow injection analysis with IM-MS (FIA/IM-MS), LC/MS, a
81 sis for further quantification studies using flow injection analysis with isotopically enriched (99)R
82 ncontact, no-carryover, automated system for flow injection analysis with mass spectrometry.
83 lorinated byproduct fragmentation ions using flow injection analysis with orbitrap mass spectrometry.
84    The constructed detector was tested using flow injection analysis with water as the mobile phase,
85  arrays) can be considered as a manifold for flow injection analysis without an external pump and inj

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