Fluorescence Lifetime Imaging Techniques-A Review on Principles, Applications and Clinical Relevance.

V I Shcheslavskiy, M V Shirmanova, K S Yashin, A C Rück, M C Skala, W Becker
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Abstract

This article gives an overview of the most frequently used fluorescence-lifetime imaging (FLIM) techniques, their capabilities, and typical applications. Starting from a general introduction to fluorescence and phosphorescence lifetime, we will show that the fluorescence lifetime or, more accurately, the fluorescence decay function of a fluorophore is a direct indicator of the interaction with its molecular environment. FLIM is therefore more than a simple contrast technique in microscopy-it is a technique of molecular imaging. FLIM techniques can be classified into time-domain and frequency-domain techniques, analogue and photon counting techniques, and scanning and wide-field techniques. Starting from an overview of these general technical principles we will describe the features and peculiarities of the different FLIM techniques in use. An extended section is dedicated to TCSPC FLIM, addressing unique capabilities that make the technique especially interesting to FLIM of biological systems.

荧光寿命成像技术的原理、应用及临床意义综述
本文概述了最常用的荧光寿命成像(FLIM)技术、它们的功能和典型应用。从对荧光和磷光寿命的一般介绍开始,我们将展示荧光寿命,或者更准确地说,荧光团的荧光衰减函数是与其分子环境相互作用的直接指标。因此,FLIM不仅仅是一种简单的显微镜对比技术,它还是一种分子成像技术。FLIM技术可分为时域和频域技术、模拟和光子计数技术、扫描和宽视场技术。从这些一般技术原理的概述开始,我们将描述使用中的不同FLIM技术的特征和特点。一个扩展的部分是专门为TCSPC FLIM,解决独特的能力,使技术特别有趣的生物系统的FLIM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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