SEARCH

SEARCH BY CITATION

LITERATURE CITED

  • 1
    Perfetto SP,Chattopadhyay PK,Roederer M. Seventeen-colour flow cytometry: Unravelling the immune system. Nat Rev Immunol 2004; 4: 648655.
  • 2
    Aroca RF,varez-Puebla RA,Pieczonka N,Sanchez-Cortez S,Garcia-Ramos JV. Surface-enhanced Raman scattering on colloidal nanostructures. Adv Colloid Interface Sci 2005; 116: 4561.
  • 3
    Vo-Dinh T,Yan F,Stokes DL. Plasmonics-based nanostructures for surface-enhanced Raman scattering bioanalysis. Methods Mol Biol 2005; 300: 255283.
  • 4
    Doering WE,Nie S. Spectroscopic tags using dye-embedded nanoparticles and surface-enhanced Raman scattering. Anal Chem 2003; 75: 61716176.
  • 5
    Mulvaney SP,Musick MD,Keating CD,Natan MJ. Glass-coated, analyte-tagged nanoparticles: A new tagging system based on detection with surface-enhanced Raman scattering. Langmuir 2003; 19: 47844790.
  • 6
    Su X,Zhang J,Sun L,Koo TW,Chan S,Sundararajan N,Yamakawa M,Berlin AA. Composite organic-inorganic nanoparticles (COINs) with chemically encoded optical signatures. Nano Lett 2005; 5: 4954.
  • 7
    Jun BH,Kim JH,Park H,Kim JS,Yu KN,Lee SM,Choi H,Kwak SY,Kim YK,Jeong DH,Cho MH,Lee YS. Surface-enhanced Raman spectroscopic-encoded beads for multiplex immunoassay. J Comb Chem 2007; 9: 237244.
  • 8
    Kim JH,Kim JS,Choi H,Lee SM,Jun BH,Yu KN,Kuk E,Kim YK,Jeong DH,Cho MH,Lee YS. Nanoparticle probes with surface enhanced Raman spectroscopic tags for cellular cancer targeting. Anal Chem 2006; 78: 69676973.
  • 9
    Monaghan PB,McCarney KM,Ricketts A,Littleford RE,Docherty F,Smith WE,Graham D,Cooper JM. Bead-based DNA diagnostic assay for chlamydia using nanoparticle-mediated surface-enhanced resonance Raman scattering detection within a lab-on-a-chip format. Anal Chem 2007; 79: 28442849.
  • 10
    Sha MY,Penn SG,Freeman RG,Doering WE. Detection of human viral RNA via a combined fluorescence and SERS molecular beacon assay. NanoBioTechnology 2007; 3: 2330.
  • 11
    Yu KN,Lee SM,Han JY,Park H,Woo MA,Noh MS,Hwang SK,Kwon JT,Jin H,Kim YK,Hergenrother PJ,Jeong DH,Lee YS,Cho MH. Multiplex targeting, tracking, and imaging of apoptosis by fluorescent surface enhanced Raman spectroscopic dots. Bioconjugate Chem 2007; 18: 11551162.
  • 12
    Dubelaar GB,Gerritzen PL,Beeker AE,Jonker RR,Tangen K. Design and first results of CytoBuoy: A wireless flow cytometer for in situ analysis of marine and fresh waters. Cytometry 1999; 37: 247254.
  • 13
    Fuller RR,Sweedler JV. Characterizing submicron vesicles with wavelength-resolved fluorescence in flow cytometry. Cytometry 1996; 25: 144155.
  • 14
    Gauci MR,Vesey G,Narai J,Veal D,Williams KL,Piper JA. Observation of single-cell fluorescence spectra in laser flow cytometry. Cytometry 1996; 25: 388393.
  • 15
    Goddard G,Martin JC,Naivar M,Goodwin PM,Graves SW,Habbersett R,Nolan JP,Jett JH. Single particle high resolution spectral analysis flow cytometry. Cytometry A 2006; 69A: 842851.
  • 16
    Robinson JP,Rajwa B,Gergori G,Jones J,Patsekin V. Multispectral cytometry of single bio-particles using a 32 channel PMT. Proc SPIE-Int Soc Opt Eng 2005; 5692: 359365.
  • 17
    Lee PC,Meisel D. Adsorption and surface-enhanced Raman of dyes on silver and gold sols. J Phy Chem 1982; 86: 33913395.
  • 18
    Escoriza MF,VanBriesen JM,Stewart S,Maier J. Raman spectroscopic discrimination of cell response to chemical and physical inactivation. Appl Spectrosc 2007; 61: 812823.
  • 19
    Sasic S. An in-depth analysis of Raman and near-infrared chemical images of common pharmaceutical tablets. Appl Spectrosc 2007; 61: 239250.
  • 20
    Taleb A,Diamond J,McGarvey JJ,Beattie JR,Toland C,Hamilton PW. Raman microscopy for the chemometric analysis of tumor cells. J Phys Chem B 2006; 110: 1962519631.
  • 21
    Chattopadhyay PK,Price DA,Harper TF,Betts MR,Yu J,Gostick E,Perfetto SP,Goepfert P,Koup RA,De Rosa SC,Bruchez MP,Roederer M. Quantum dot semiconductor nanocrystals for immunophenotyping by polychromatic flow cytometry. Nat Med 2006; 12: 972977.