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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Influence of fluorescence anisotropy on fluorescence intensity and lifetime measurement: theory, Simulations and experiments
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Influence of fluorescence anisotropy on fluorescence intensity and lifetime measurement: theory, Simulations and experiments

机译:荧光各向异性对荧光强度和寿命测量的影响:理论,模拟和实验

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摘要

The significance of fluorescence anisotropy in fluorescence intensity and lifetime measurements, and erroneous measurements and interpretations resulting from its disregard, are thoroughly discussed, formulated and quantified. In all fluorescence-related measurements-including excitation and emission spectra, relative fluorescence intensity (FI), fluorescenc life time (FLT), fluorescence resonance energy transfer (FRET), etc., with the exception of fluorescence polarization and anisotropy-it is generally true that the higher the fluorescence anisotropy, the greater the distortion of fluorescence measurements. Quantifiable distortions occur when fluorescence measurements are conducted without considering the influence of fluorescence anisotropy. Here, this influence is described by numerous newly developed mathematical expressions which are simulated and experimentally confirmed utilizing single and binary fluorescent solutions of fluorophores with different spectroscopic characteristics. A marked agreement is shown between the theory and experimental data, clearly indicating the legitimacy of the physical suppositions and the mathematical expressions presented in this paper. Practical and instructive implications are discussed. The following findings are of special applicative importance: 1) the existence of an infinite number of couples of Magic Angles; 2) the deviation between two equally fluorescing particles having different fluorescence anisotropies; 3) the relation between the detected fluorescence intensity and anisotropy when measured under various setups of emission and excitation polarizers; 4) the dependence of the artificial normalized steady-state weight of a single-exponentially decaying fluorophore on its fluorescence anisotropy.
机译:对荧光各向异性在荧光强度和寿命测量中的重要性以及因忽略其而导致的错误测量和解释进行了彻底的讨论,制定和量化。在所有与荧光有关的测量中,包括激发和发射光谱,相对荧光强度(FI),荧光寿命(FLT),荧光共振能量转移(FRET)等,除了荧光偏振和各向异性外,通常是的确,荧光各向异性越高,荧光测量值的失真越大。在不考虑荧光各向异性影响的情况下进行荧光测量时会发生可量化的失真。在这里,这种影响通过许多新开发的数学表达式来描述,这些数学表达式是利用具有不同光谱特性的荧光团的单一和二元荧光溶液进行模拟和实验证实的。理论和实验数据之间显示出明显的一致性,清楚地表明了本文提出的物理假设和数学表达式的合法性。讨论了实际和指导意义。以下发现具有特殊的应用重要性:1)无限数量的魔术角对的存在; 2)具有不同荧光各向异性的两个相等荧光颗粒之间的偏差; 3)在各种发射和激发偏振器的设置下测量时,检测到的荧光强度与各向异性之间的关系; 4)单指数衰减荧光团的人工归一化稳态权重对其荧光各向异性的依赖性。

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