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Titlebook: Reviews in Fluorescence 2007; Chris D. Geddes,Joseph R. Lakowicz Book 2009 Springer-Verlag New York 2009 Geddes.Tryptophan.fluorescence.pr

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Fluorescence Signal Amplification for Ultrasensitive DNA Detection,nsitivity, one can amplify either the target DNA or the signal generated by each target molecule detected. Since enzymatic amplification of DNA is prone to contamination or inhibition, sensors that can benefit from signal amplification are usually more robust. Several approaches have been developed
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Exploring the Electrostatic Landscape of Proteins with Tryptophan Fluorescence,escent probe—a probe withno more complications than most non-intrinsic probes, which are usually large dyes withincompletely explored complexity. An overview highlights and summarizes keyadvancements during the last decade that have increased our understanding of Trp and itsfluorescence in proteins.
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Fluorescent Probes for Two-Photon Excitation Microscopy,ntly labeled biomolecules and cellular structures..Compared to traditional fluorescence microscopy, TPEM offers intrinsic three-dimensional resolution combined with reduced phototoxicity, increased depth penetration, and lower background fluorescence. At present, the majority of fluorophores used in
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High-Resolution Fluorescence Studies on Excited-State Intra- and Intermolecular Proton Transfer,-state double proton transfer (ESDPT) in the case of dimeric species. Recent results are shown for four classes of compounds, i.e., hydroxychromones, aza-indoles, pyrazoloquinolines, and amino-substituted pyridine-.-oxides in liquid solutions, polycrystalline matrices, and/or a supersonic jet. These
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Hydrocarbon Fluid Inclusion Fluorescence: , ,are less than 10 micrometres in size that host fossil fluids which existed when the minerals grew or healed after fracture. Of particular interest to the petroleum industry are inclusions that contain hydrocarbon fluids, which originated from petroleum that once migrated through the rocks before bec
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Photophysics and Biophysical Applications of Benzo[,]phenoxazine Type Fluorophores,cations in the last decade. The high sensitivity of fluorescence to the local molecular environment makes it possible to probe complex mediums and/or materials from a wide range of aspects: local polarity effects, specific physical and chemical interactions, and also morphological and topological co
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A Fluorescence Quenching Method to Study Interactions of Hemoglobin Derivatives with Erythroid Spec to study interactions of other proteins with hemoglobin derivatives and other heme proteins. The concentration-dependent change in the fluorescence intensity of fluorescein-conjugated spectrin (F-spectrin) in the presence of oxy-hemoglobin and other hemoglobin derivatives, e.g. globin chains, hemog
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Photoluminescence of Pharmaceutical Materials in the Solid State. 4. Fluorescence Studies of Variouphic and solvent content characteristics. Even though erythromycin A does not exhibit fluorescence when in a dissolved state, in the solid state the solvated materials were found to be mildly fluorescent. Differences in fluorescence intensity were noted among the solvatomorphs, which could be roughl
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1573-8086 e component.Includes supplementary material: .Reviews in Fluorescence 2007., the forth volume of the book serial from Springer, serves as a comprehensive collection of current trends and emerging hot topics in the field of fluorescence. ..It summarizes the year’s progress in fluorescence, with autho
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Spectra FRET: A Fluorescence Resonance Energy Transfer Method in Live Cells, and acceptor emissions as well as detecting the presence of other background light. Moreover, spectra FRET allows for a fine correction for common contaminations in FRET experiments, such as cross-talk and bleed-through, therefore contributing to the reduction of errors in FRET analysis.
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