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Fluorescent microscopy

Figure Bl.22.11. Near-field scanning optical microscopy fluorescence image of oxazine molecules dispersed on a PMMA film surface. Each protuberance in this three-dimensional plot corresponds to the detection of a single molecule, the different intensities of those features being due to different orientations of the molecules. Sub-diffraction resolution, in this case on the order of a fraction of a micron, can be achieved by the near-field scaiming arrangement. Spectroscopic characterization of each molecule is also possible. (Reprinted with pennission from [82]. Copyright 1996 American Chemical Society.)... Figure Bl.22.11. Near-field scanning optical microscopy fluorescence image of oxazine molecules dispersed on a PMMA film surface. Each protuberance in this three-dimensional plot corresponds to the detection of a single molecule, the different intensities of those features being due to different orientations of the molecules. Sub-diffraction resolution, in this case on the order of a fraction of a micron, can be achieved by the near-field scaiming arrangement. Spectroscopic characterization of each molecule is also possible. (Reprinted with pennission from [82]. Copyright 1996 American Chemical Society.)...
Kwak, E. S. and Vanden Bout, D. A. (2003). Fully time-resolved nearfield scanning optical microscopy fluorescence imaging. Anal. Chim. Acta 496, 259-66. [Pg.143]

Aqueous mounting media for Aqueous mounting media for Organic mounting media brightfield microscopy fluorescence microscopy... [Pg.28]

Total internal reflection fluorescence (TIRF) microscopy, fluorescence in situ hybridization (FISH), fluorescence recovery after photobleaching (FRAP), fluorescence lifetime imaging microscopy (FLIM). [Pg.42]

Electronic Absorption and Luminescence (Volume 12) Absorption and Luminescence Probes Fluorescence Imaging Microscopy Fluorescence Lifetime Measurements, Applications of Indirect Detection Methods in Capillary Electrophoresis Surface Measurements using Absorption/Luminescence... [Pg.21]

In immunofluorescence microscopy, fluorescent compounds (which absorb light at the exciting wavelength and then emit it at the emission wavelength) are attached to an antibody specific for the subcellular structure under investigation. The antibody is then added to the specimen and allowed to bind. Unbound antibody is removed and the specimen is illuminated at the exciting wavelength, to visualize where the antibody has bound. [Pg.10]

The second step required in the application of avidin-biotin technology is to prepare an appropriate avidin-associated probe or probes for the desired application (for general reviews, see refs. 1 and 2). For example, a fluorescent form of avidin can be used for fluorescence microscopy, fluorescence-activated cell sorting, and in some cases, for immunoassay. Likewise, an avidin-enzyme conjugate can be used for immunoblotdng, immunoassay, light microscopy, and in some cases, electron microscopy. An immobilized form of avidin can be used for isoladon purposes (see Note 1). [Pg.143]

Talyzina N. M., Moldowan J. M., Johannisson A., and Fago F. J. (2000) Affinities of early Cambrian acritarchs studied by using microscopy, fluorescence flow cytometry and biomarkers. Rev. Palaeobot. Palynol. 108(1-2), 37-53. [Pg.3981]

Key Words [ -, a, -, and a2-Adrenergic receptors confocal microscopy fluorescent ligands green fluorescent protein image analysis. [Pg.151]

Keywords Immunohistochemistry Antibody labeling Fluorescence microscopy Fluorescent immunocytochemistry Fluorescent immunohistochemistry Indirect immunocytochemistry Immunostaining... [Pg.1]


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See also in sourсe #XX -- [ Pg.388 , Pg.389 ]




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Adsorption fluorescence microscopy

Advanced fluorescence microscopy

Antibodies fluorescence microscopy

Applied Fluorescence Microscopy

Basic fluorescence microscopy

Composite confocal fluorescence microscopy image

Confocal fluorescence laser-scanning microscopy

Confocal fluorescence laser-scanning microscopy image depth

Confocal fluorescence laser-scanning microscopy staining

Dark-field, Fluorescence and Confocal Microscopy

Dyes, fluorescence microscopy

Electrochemical Systems Studied with Fluorescence Microscopy

Electrochemical systems, fluorescence microscopy

Electron microscopy fluorescence

Epi-fluorescence microscopy studie

Filter Sets in Fluorescence Microscopy

Fluorescence Microscopy Techniques for the Structural Analysis of Polymer Materials

Fluorescence Microscopy of Liposome Fusion onto a DOPC-coated Hg Interface

Fluorescence and Electron microscopy

Fluorescence and Phase Contrast Microscopy

Fluorescence confocal laser microscopy

Fluorescence confocal optical microscopy

Fluorescence confocal polarizing microscopy

Fluorescence confocal polarizing microscopy FCPM)

Fluorescence digital imaging microscopy

Fluorescence lifetime imaging microscopy

Fluorescence lifetime imaging microscopy FLIM)

Fluorescence lifetime imaging microscopy frequency-domain

Fluorescence lifetime imaging microscopy time-domain

Fluorescence microscopy

Fluorescence microscopy

Fluorescence microscopy actin detection

Fluorescence microscopy applications

Fluorescence microscopy calcium imaging

Fluorescence microscopy calcium measurements

Fluorescence microscopy cellular uptake

Fluorescence microscopy characterization

Fluorescence microscopy chemistry

Fluorescence microscopy confocal

Fluorescence microscopy conjugates

Fluorescence microscopy cytoskeleton dynamics

Fluorescence microscopy double labeling

Fluorescence microscopy equipment

Fluorescence microscopy fixed cells

Fluorescence microscopy fluorophore choice

Fluorescence microscopy fluorophore selection

Fluorescence microscopy hybridization

Fluorescence microscopy image analysis

Fluorescence microscopy image interpretation

Fluorescence microscopy image resolution

Fluorescence microscopy instrumentation

Fluorescence microscopy interfacing

Fluorescence microscopy labeling reagents

Fluorescence microscopy living cell imaging

Fluorescence microscopy living cells

Fluorescence microscopy mammalian systems

Fluorescence microscopy materials

Fluorescence microscopy measurement

Fluorescence microscopy microscope

Fluorescence microscopy monolayers

Fluorescence microscopy overview

Fluorescence microscopy polarization studies

Fluorescence microscopy principle

Fluorescence microscopy protein labeling

Fluorescence microscopy proving

Fluorescence microscopy sample preparation

Fluorescence microscopy samples

Fluorescence microscopy self-assembly

Fluorescence microscopy single-molecule detection

Fluorescence microscopy single-photon timing

Fluorescence microscopy specimen preparation

Fluorescence microscopy stains

Fluorescence microscopy stimulated emission depletion

Fluorescence microscopy studies, electrochemical systems

Fluorescence microscopy synthesis

Fluorescence microscopy tissue selection

Fluorescence microscopy video enhancement

Fluorescence microscopy, analytical method

Fluorescence microscopy, analytical method Applications

Fluorescence microscopy, enzyme

Fluorescence microscopy, phospholipid monolayers

Fluorescence microscopy, presence

Fluorescence probes, microscopy studies

Fluorescence ratio imaging microscopy

Fluorescence recovery after photobleaching microscopy

Fluorescence scanning tunneling microscopy

Fluorescence spectral imaging microscopy

Fluorescence wide-field microscopy

Fluorescent confocal microscopy

Fluorescent confocal microscopy probe

Fluorescent confocal optical microscopy

Fluorescent confocal polarizing microscopy

Fluorescent confocal polarizing microscopy FCPM)

Fluorescent imaging microscopy

Fluorescent microscopy and imaging

Green fluorescent protein confocal microscopy

Green fluorescent protein microscopy

Imaging hybridization Fluorescence microscopy

Improvements in conventional fluorescence microscopy

Kerr gated fluorescence microscopy

Laser scanning fluorescence microscopy

Light microscopy confocal fluorescence

Light microscopy fluorescence

Light microscopy fluorescence, measurement

Liposome fusion, fluorescence microscopy

Monolayer fluorescence microscopy

Optical fluorescence microscopy

Optical fluorescence microscopy molecular dye size and properties

Optical fluorescence microscopy three-dye antenna systems

Patch-clamp fluorescence microscopy

Photosynthetic fluorescence microscopy

Polarized fluorescence microscopy

Poly fluorescence microscopy

Principle of Fluorescence Microscopy

Quantitative fluorescence microscopy

Quantitative fluorescent microscopy

Raman and Fluorescence Spectroscopy Coupled with Scanning Tunneling Microscopy

Scanning confocal fluorescence microscopy

Single-molecule detection using advanced fluorescence microscopy techniques

Surface Plasmon Fluorescence Microscopy

Surface fluorescence microscopy

Surface plasmons fluorescence microscopy

TIRFM fluorescence microscopy

Time resolving, fluorescence microscopy

Time-resolved fluorescence microscopy

Total internal reflectance fluorescence microscopy

Total internal reflection fluorescence TIRF) microscopy

Total internal reflection fluorescence microscopy

Total internal reflection fluorescence microscopy TIRFM)

Total internal reflection fluorescence microscopy evanescent fields

Total internal reflection fluorescence microscopy materials

Total internal reflection fluorescence microscopy method

Total internal reflection fluorescence microscopy single-molecule imaging techniques

Two-photon Fluorescence Microscopy for Biological Imaging

Two-photon fluorescence microscopy

Two-photon laser scanning fluorescence microscopy

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