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1 le, not only have major changes been made in immunochromatographic antigen detection (IAD) testing fo
2 nitial article asked about the role of rapid immunochromatographic antigen testing in the diagnosis o
3 ollowing question: what is the role of rapid immunochromatographic antigen testing in the laboratory
6 d-8 detected by both culture and Shiga toxin immunochromatographic assay (IA), 3 by culture, and 1 by
8 DPP Zika ICA; Chembio, Medford, NY), a rapid immunochromatographic assay (ICA), and the InBios ZIKV D
9 enzyme-linked immunosorbent assay (EIA), an immunochromatographic assay (ICGA), and a latex bead agg
10 ematic comparison of phenotypic tests and an immunochromatographic assay (ICT) for the detection of O
13 icle describes the mathematical model for an immunochromatographic assay for the detection of specifi
14 Herein, the development of a quantitative immunochromatographic assay for the detection of the syn
15 ble to difficult and toxic eye-drop regimens.Immunochromatographic assay is an effective diagnostic t
16 loped to decrease the detection limit for an immunochromatographic assay of specific immunoglobulins.
18 oscience, Inc.) is a solid-phase qualitative immunochromatographic assay that detects and distinguish
19 cton Dickinson) is a solid-phase qualitative immunochromatographic assay that detects and distinguish
20 al Corporation) is a solid-phase qualitative immunochromatographic assay that detects Giardia lamblia
25 S. pneumoniae urinary antigen test, a rapid immunochromatographic assay, for the diagnosis of bacter
27 r oid stimulating hormone (TSH) lateral flow immunochromatographic assays (LFA) are used to screen fo
29 ped strip test demonstrates the potential of immunochromatographic assays for the quantitative monito
31 e to describe the properties of phosphors in immunochromatographic assays, a detection limit of 10 pg
32 nsporting and mixing liquids in lateral-flow immunochromatographic assays, but their use for quantita
36 labeled lateral flow immunoassay (LFIA) for immunochromatographic based rapid detection of urinary D
37 agnostic assay for T. vaginalis that uses an immunochromatographic capillary flow (dipstick) assay an
38 previously developed, specific, rapid-format immunochromatographic card test that detects immunoglobu
43 ated two commercial F1 antigen capture-based immunochromatographic dipsticks, Yersinia Pestis (F1) Sm
44 and specificity of a new rapid, lateral-flow immunochromatographic HIV-1 antibody detection device.
45 ody-reactive specimens are confirmed with an immunochromatographic HIV-1/HIV-2 antibody differentiati
46 stain, sputum culture, blood culture, or the immunochromatographic (ICT) BinaxNow S. pneumoniae test
48 nosis over the past decade has been based on immunochromatographic malaria rapid diagnostic tests (mR
51 se modified viral nanoparticles were used in immunochromatographic sandwich assays for the direct det
54 ext generations of fluorometric lateral flow immunochromatographic strip (ICTS) owing to the great ad
56 tomography (CT) scan, RT-qPCR, lateral flow immunochromatographic strip (LFICS) for diagnosis of COV
59 osensor diagnosis device that integrates the immunochromatographic strip technique with an electroche
60 f the speed and low cost of the conventional immunochromatographic strip test and the high sensitivit
66 of LMG in aquatic animals obtained from the immunochromatographic strip test were in good agreement
68 sandwich immunoreaction was performed on the immunochromatographic strip, and the captured QD labels
69 ty similar to that of commercially available immunochromatographic strips that is low-cost, and provi
70 commercialized a lateral flow assay based on immunochromatographic technology (ICT) that detects Aspe
71 rapid BinaxNOW Staphylococcus aureus (BNSA) immunochromatographic test (Alere Scarborough, Inc., ME)
74 ICT Tuberculosis test is a rapid, card-based immunochromatographic test for detection of antibodies d
77 s to develop a smartphone-based dual-channel immunochromatographic test strip (ICTS) for on-site biom
79 an approach for the development of multiplex immunochromatographic test strip (MICS) for neomycin (NE
80 pproach allows obtaining 'dry', multi-stage, immunochromatographic test strips, providing a highly se
81 This study presents the development of an immunochromatographic test system aimed at the detection
84 Virus IgM Capture ELISA and the PanBio Rapid Immunochromatographic Test, on serum samples collected d
88 and evaluate their utility as point of care immunochromatographic tests (POC-ICTs) to diagnose uroge
90 were screened for Cryptosporidium species by immunochromatographic tests and by sequencing the 18S ri