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    Results: 1 to 20 of 94

    1.

    Evaluating the use of 3'-(p-Aminophenyl) fluorescein for determining the formation of highly reactive oxygen species in particle suspensions.

    Cohn CA, Pedigo CE, Hylton SN, Simon SR, Schoonen MA.

    Geochem Trans. 2009 Aug 11;10:8.PMID: 19671165 [PubMed - in process]Related articlesFree article

    2.

    Comparison of fluorescence-based techniques for the quantification of particle-induced hydroxyl radicals.

    Cohn CA, Simon SR, Schoonen MA.

    Part Fibre Toxicol. 2008 Feb 28;5:2.PMID: 18307787 [PubMed - in process]Related articlesFree article

    3.

    Generation of highly-reactive oxygen species is closely related to hair cell damage in rat organ of Corti treated with gentamicin.

    Choung YH, Taura A, Pak K, Choi SJ, Masuda M, Ryan AF.

    Neuroscience. 2009 Jun 16;161(1):214-26. Epub 2009 Mar 24.PMID: 19318119 [PubMed - indexed for MEDLINE]Related articles

    4.

    Development of novel fluorescence probes that can reliably detect reactive oxygen species and distinguish specific species.

    Setsukinai K, Urano Y, Kakinuma K, Majima HJ, Nagano T.

    J Biol Chem. 2003 Jan 31;278(5):3170-5. Epub 2002 Nov 4.PMID: 12419811 [PubMed - indexed for MEDLINE]Related articlesFree article

    5.

    Using yeast RNA as a probe for generation of hydroxyl radicals by earth materials.

    Cohn CA, Laffers R, Schoonen MA.

    Environ Sci Technol. 2006 Apr 15;40(8):2838-43.PMID: 16683632 [PubMed - indexed for MEDLINE]Related articles

    6.

    Validation of a robust and sensitive method for detecting hydroxyl radical formation together with evoked neurotransmitter release in brain microdialysis.

    Freinbichler W, Colivicchi MA, Fattori M, Ballini C, Tipton KF, Linert W, Della Corte L.

    J Neurochem. 2008 May;105(3):738-49. Epub 2008 Jan 8.PMID: 18194218 [PubMed - indexed for MEDLINE]Related articles

    7.

    The detection of hydroxyl radicals in vivo.

    Freinbichler W, Bianchi L, Colivicchi MA, Ballini C, Tipton KF, Linert W, Corte LD.

    J Inorg Biochem. 2008 May-Jun;102(5-6):1329-33. Epub 2007 Dec 28. Review.PMID: 18262275 [PubMed - indexed for MEDLINE]Related articles

    8.

    Pyrite-induced hydroxyl radical formation and its effect on nucleic acids.

    Cohn CA, Mueller S, Wimmer E, Leifer N, Greenbaum S, Strongin DR, Schoonen MA.

    Geochem Trans. 2006 Apr 4;7:3.PMID: 16759350 [PubMed]Related articlesFree article

    9.

    A simple fluorescent probe for the determination of dissolved oxygen based on the catalytic activation of oxygen by iron(II) chelates.

    Luo W, Abbas ME, Zhu L, Zhou W, Li K, Tang H, Liu S, Li W.

    Anal Chim Acta. 2009 Apr 27;640(1-2):63-7. Epub 2009 Mar 24.PMID: 19362621 [PubMed - indexed for MEDLINE]Related articles

    10.

    Monitoring singlet oxygen and hydroxyl radical formation with fluorescent probes during photodynamic therapy.

    Price M, Reiners JJ, Santiago AM, Kessel D.

    Photochem Photobiol. 2009 Sep-Oct;85(5):1177-81. Epub 2009 Apr 6.PMID: 19508643 [PubMed - indexed for MEDLINE]Related articlesFree article

    11.

    Role of pyrite in formation of hydroxyl radicals in coal: possible implications for human health.

    Cohn CA, Laffers R, Simon SR, O'Riordan T, Schoonen MA.

    Part Fibre Toxicol. 2006 Dec 19;3:16.PMID: 17177987 [PubMed]Related articlesFree article

    12.

    A method for generating uniform size-segregated pyrite particle fractions.

    Wolfe AL, Liu R, Stewart BW, Capo RC, Dzombak DA.

    Geochem Trans. 2007 Oct 10;8:9.PMID: 17927834 [PubMed - in process]Related articlesFree article

    13.

    Effect of pH on carbon dioxide hydrate formation in mixed soil mineral suspensions.

    Lamorena RB, Lee W.

    Environ Sci Technol. 2009 Aug 1;43(15):5908-14.PMID: 19731696 [PubMed - indexed for MEDLINE]Related articles

    14.

    Oil-in-water emulsions for encapsulated delivery of reactive iron particles.

    Berge ND, Ramsburg CA.

    Environ Sci Technol. 2009 Jul 1;43(13):5060-6.PMID: 19673307 [PubMed - indexed for MEDLINE]Related articles

    15.

    Non-linear dielectric spectroscopy of microbiological suspensions.

    Treo EF, Felice CJ.

    Biomed Eng Online. 2009 Sep 22;8:19.PMID: 19772595 [PubMed - indexed for MEDLINE]Related articlesFree article

    16.

    Multiplex pressure measurement in microsystems using volume displacement of particle suspensions.

    Chung K, Lee H, Lu H.

    Lab Chip. 2009 Dec 7;9(23):3345-53. Epub 2009 Sep 30.PMID: 19904399 [PubMed - in process]Related articles

    17.

    Cloud condensation nuclei and ice nucleation activity of hydrophobic and hydrophilic soot particles.

    Koehler KA, DeMott PJ, Kreidenweis SM, Popovicheva OB, Petters MD, Carrico CM, Kireeva ED, Khokhlova TD, Shonija NK.

    Phys Chem Chem Phys. 2009 Sep 28;11(36):7906-20. Epub 2009 Jul 28.PMID: 19727498 [PubMed - indexed for MEDLINE]Related articles

    18.

    XPS study of nitrogen dioxide adsorption on metal oxide particle surfaces under different environmental conditions.

    Baltrusaitis J, Jayaweera PM, Grassian VH.

    Phys Chem Chem Phys. 2009 Oct 1;11(37):8295-305. Epub 2009 Jul 2.PMID: 19756286 [PubMed]Related articles

    19.

    Detection of hydroxyl radicals produced by wood-decomposing fungi.

    Tornberg K, Olsson S.

    FEMS Microbiol Ecol. 2002 Apr 1;40(1):13-20.PMID: 19709206 [PubMed - in process]Related articles

    20.

    Chain photoreduction of CCl3F in TiO2 suspensions: enhancement induced by O2.

    Winkelmann K, Calhoun RL, Mills G.

    J Phys Chem A. 2006 Dec 28;110(51):13827-35.PMID: 17181340 [PubMed]Related articles

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