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Titlebook: Single Molecule Spectroscopy; Nobel Conference Lec Rudolf Rigler,Michel Orrit,Thomas Basché Book 2001 Springer-Verlag Berlin Heidelberg 200

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,Single-Molecule Fluorescence — Each Photon Counts,tion experiments [.], fluorescence excitation detection facilitated single-molecule spectroscopy with an almost unbelievable signal-to-noise ratio. Fluorescence excitation spectroscopy allowed for the investigation of properties of single molecules and for the comparison of the time average of these
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The Characterization of a Transmembrane Receptor Protein by Fluorescence Correlation Spectroscopy, almost three decades ago [., ., .] and has found, especially in the last ten years, increased interest as a tool for screening of ligand—receptor interactions in fundamental research [., ., ., .] and in drug development [., ., ., .]. In this contribution, we use FCS for the characterization of a tr
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Coherent Intramolecular Dynamics in Small Enzyme Populations,ntal methods as time-resolved X-ray spectroscopy of protein crystals or single-molecule fluorescence microscopy [.–.] allow observation of individual enzymic turnover cycles [., .]. Enzymic reactions in living biological cells are confined to very small spatial volumes and this can lead to qualitati
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Single-Molecule Dynamics in Biosystems,rs to fulfill their functions. Their collaboration allows the activity of biological systems. The reactions and behaviors of molecular machines must be flexible in order to respond to their surroundings. This flexibility is essential for biological organisms. The underlying mechanism of molecular ma
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Single-Molecule Dynamics Associated with Protein Folding and Deformations of Light-Harvesting Complgenerally display the evolution of the mean of that ensemble. However, since heterogeneity of structure and mechanism is required to describe complex systems such as proteins and other biological assemblies, this useful paradigm can break down. Recent developments in single molecule fluorescence det
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