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Rapid detection and identification

J. van der Greef Rapid detection and identification of angiotensin-converting enzyme inhibitors by on-line liquid chromatography-biochemical detection, coupled to electrospray mass spectrometry. [Pg.214]

W.E. Lee, H.G. Thompson, J.G. Hall and D.E. Bader, Rapid detection and identification of biological and chemical agents by immunoassay, gene probe assay and enzyme inhibition using a silicon-based biosensor, Biosens. Bioelectron., 14(10-11) (2000) 795-804. [Pg.125]

M. J. Heller, L. E. Morrison, Rapid Detection and Identification of Infectious... [Pg.323]

The Special operations forces (SOF) Non-intru-sive Detector and the Swept Frequency Acoustic Interferometry (SFAI) detector are portable, handheld acoustic instruments developed specifically to enable rapid detection and identification of CW agents within munitions, railcars, ton containers, and so on. [Pg.77]

Mass spectrometry has proved highly suitable for the elucidation of chemical structures and sensitivity. It is thus an invaluable tool for resolving extremely complex natural mixtures. Thus, on-line coupled SFE-MS constitutes a rapid, reliable choice for the determination of mycotoxins in wheat, which possess a high toxicological interest. For example, an SF extractor coupled to an MS chemical ionization source provided limits of detection in the picogram range for diacetoxyscirpenol and toxin T-2 [122]. Used in tandem with chemical ionization-collision induced dissociation MS-MS, SFE has also enabled the rapid detection and identification of species without the need for complete extraction [131],... [Pg.327]

Heller, M. and Morrison, L. (1985) In Rapid Detection and Identification of Infectious Agents (Kingsbury, D. and Falkow, S., eds.). Academic Press, New York. [Pg.310]

Palomares C, Torres Ml, Torres A, Aznar J, Palomares JC (2003) Rapid detection and identification of Staphylococcus aureus from blood culture specimens using real-time fluorescence PCR. Diagn Microbiol Infect Dis 45 183-189... [Pg.176]

Tenover FC (2007) Rapid detection and identification of bacterial pathogens using novel molecular technologies infection control and beyond. CUn Infect Dis 44 418 23 Tenover FC, Vaughn RR, McDougal LK, Fosheim GE, McGowan JE Jr (2007) Multiple-locus variable-number tandem-repeat assay analysis of methidllin-resistant Staphylococcus aureus strains. J CUn Microbiol 45 2215-2219... [Pg.181]

Future opportunities include rapid detection and identification of bacterial causes of sepsis and meningitis, with the ability in the latter to differentiate viral and fungal etiologies. Universal primers have been described that are conserved in all eubacteria tested and a similar situation exists for fungi and enteroviruses (B3, R6, W8). A coamplification test that combines primers for the three types of agents could prove medically useful in selecting therapy if the result can be obtained in 2 hours. [Pg.185]

HPLC coupled with either ionspray or continuous-flow FAB-MS or gas chromatography (GC)-MS using single ion monitoring allowed rapid detection and identification of secoisolariciresinol diglycoside in flaxseed. Two diastereoisomers of secoisolariciresinol diglycoside were detected by this method [47,48],... [Pg.204]

Gene Probes - These are polynucleotides that are 20-30 units bend, under stringent conditions, coniplementory nucleic acid fragments characteristic of biological agents. These units provide the basis of rapid detection and identification. [Pg.233]

Scholz K, Dekant W, Volkel W, Pahler A. Rapid detection and identification of N-acetyl-L-cysteine thioethers using constant neutral loss and theoretical multiple reaction monitoring combined with enhanced product-ion scans on a linear ion trap mass spectrometer. J Am Soc Mass Spectrom 2005 16 1976-1984. [Pg.318]

Rossi TM and Warner IM (1985) Bacterial identification using fluorescence spectroscopy. In Nelson WH (ed.) Rapid Detection and Identification of Microorganisms, pp. 1-50. New York Pergamon. [Pg.1352]

Asano, S., lijima, K., Suzuki, K., Motoyama, Y., Ogata, T., Kitagawa, Y. (2009). Rapid detection and identification of beer-spoilage lactic acid bacteria by microcolony method. Journal of Bioscience and Bioengineering, 108(2), 124—129. [Pg.286]

Rapid detection and identification of spoilage bacteria in beer... [Pg.287]

Saona-Rodriguez, L. E., et al. "Rapid Detection and Identification of Bacterial Strains by Fourier Transform Near-Infrared Spectroscopy." Journal of Agricultural and Food Chemistry, 49 2001,574r-579. [Pg.210]


See other pages where Rapid detection and identification is mentioned: [Pg.119]    [Pg.138]    [Pg.326]    [Pg.713]    [Pg.276]    [Pg.1896]    [Pg.53]    [Pg.54]    [Pg.78]    [Pg.188]    [Pg.245]    [Pg.729]    [Pg.483]    [Pg.483]    [Pg.282]   


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Detection and identification

Rapid detection and identification of spoilage bacteria in beer

Rapid detection and identification principle

Rapid detection and identification technique

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