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Fluorescence detection with high time resolution: From optical microscopy to simultaneous force and fluorescence spectroscopy

机译:具有高时间分辨率的荧光检测:从光学显微镜到同时作用力和荧光光谱

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摘要

Picosecond time-resolution fluorescence signal detection over many hours is possible using the time-correlated single photon counting (TCSPC) technique. Advanced TCSPC with clock oscillator set by the pulsed laser and data analysis provides a tool to investigate processes in single molecules on time scale from picoseconds to seconds. Optical imaging techniques combined with TCSPC allow one to study the spatial distribution of fluorescence properties in solution and on a surface. Mechanical manipulation of a single macromolecule by means of an atomic-force microscope makes it possible to detect fluorescence signal changes as a function of mechanical conformations of a fluorescent dye attached to a single DNA molecule.
机译:使用与时间相关的单光子计数(TCSPC)技术,可以在数小时内检测到皮秒级的时间分辨荧光信号。先进的TCSPC带有通过脉冲激光设置的时钟振荡器,并进行数据分析,提供了一种工具,可以在皮秒到秒的时间范围内研究单个分子的过程。光学成像技术与TCSPC相结合,使人们能够研究溶液和表面上荧光特性的空间分布。借助于原子力显微镜对单个大分子的机械操作使得检测荧光信号的变化成为可能,该变化取决于附着在单个DNA分子上的荧光染料的机械构象。

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