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Phase-locked detection of fluorescence lifetime and its thermometric applications

机译:荧光寿命的锁相检测及其温度应用

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A newly developed category of signal processing scheme-for the detection of fluorescence lifetime is discussed, with application to a number of inexpensive, compact and reliable fluorescence lifetime-based fibre optic sensors. With phase-sensitive detectors being used to achieve a high noise-suppression ability, the schemes discussed hem include some of the features of existing phase and modulation techniques for lifetime measurement. However, they differ from them in several aspects, especially in that they operate in a way rather similar to that of a phase-locked loop. Based on such schemes, the measured lifetime is converted to a repetitive signal whose period is directly proportional to it, and thus a high measurement resolution can be achieved. Such schemes can be operated over a wide consecutive measurement range of fluorescence lifetime, although they have been developed for comparably low bandwidth (sub-MHz) use for temperature sensor applications using long lifetime (> 1μs) fluorescent media. Illustrations of the applications of these schemes in lifetime-based fibre optic thermometers are presented showing their promising potential for both biomedical and industrial uses.
机译:讨论了新开发的信号处理方案 - 用于检测荧光寿命的检测,应用于许多廉价,紧凑且可靠的荧光寿命的荧光传感器。通过用于实现高噪声抑制能力的相位敏感探测器,所讨论的方案包括用于寿命测量的现有相位和调制技术的一些特征。然而,它们在若干方面不同,特别是它们以与锁相环的方式操作。基于这样的方案,测量的寿命被转换为其时期与其成比例的重复信号,因此可以实现高测量分辨率。这些方案可以在宽连续的荧光寿命范围内操作,尽管已经开发了使用长寿(>1μs)荧光介质的温度传感器应用的相对低带宽(Sub-MHz)使用。提出了基于寿命的光纤温度计中这些方案的应用的图示,显示了它们对生物医学和工业用途的有希望的潜力。

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