Polar Plot Representation for Frequency-Domain Analysis of Fluorescence Lifetimes

被引:0
作者
Glen I. Redford
Robert M. Clegg
机构
[1] University of Illinois,Physics Department
[2] Loomis Laboratory-Physics,undefined
来源
Journal of Fluorescence | 2005年 / 15卷
关键词
Fluorescence lifetimes; frequency-domain; FLIM; polar plot;
D O I
暂无
中图分类号
学科分类号
摘要
We present applications of polar plots for analyzing fluorescence lifetime data acquired in the frequency domain. This graphical, analytical method is especially useful for rapid FLIM measurements. The usual method for sorting out and determining the underlying lifetime components from a complex fluorescence signal is to carry out the measurement at multiple frequencies. When it is not possible to measure at more than one frequency, such as rapid lifetime imaging, specific features of the polar plot analysis yield valuable information, and provide a diagnostic visualization of the participating fluorescent species underlying a complex lifetime distributions. Data are presented where this polar plot presentation is useful to derive valuable, unique information about the underlying component distributions. We also discuss artifacts of photolysis and how this method can also be applied to samples where each fluorescence species shows a continuous distribution of lifetimes. Polar plots of frequency-domain data are commonly used for analysis of dielectric relaxation experiments (Cole–Cole plots), which have proved to be exceptionally useful in that field for decades. We compare this analytical tool that is well developed and extensively used in dielectric relaxation and chemical kinetics to fluorescence measurements.
引用
收藏
页码:805 / 815
页数:10
相关论文
共 48 条
[1]  
Piston D. W.(1989)Wide-band acousto-optic light modulator for frequency domain fluorometry and phosphorimetry Rev. Sci. Instrum. 60 2596-600
[2]  
Marriott G.(1969)Measurements of subnanosecond fluorescence lifetime with a cross-correlation phase fluorometer Ann. Acad. Sci. 158 361-76
[3]  
Radivoyevich T.(1984)Multifrequency phase and modulation fluorometry Ann. Rev. Biophys. Bioeng. 13 105-124
[4]  
Clegg R. M.(2003)The factorized form for dielectric relaxation Eur. Phys. J. B 36 21-26
[5]  
Jovin T. M.(1993)A new graphical representation for dielectric data J. Chem. Phys. 99 3119-3124
[6]  
Gratton E.(2004)Graphical representation and multicomponent analysis of single-frequency fluorescence lifetime imaging microscopy data J. Microsc. 213 1-5
[7]  
Spencer R. D.(1984)The measurement and analysis of heterogeneous emissions by multifrequency phase and modulation fluorometry Appl. Spectrosc. Rev. 20 55-106
[8]  
Weber G.(1967)Time-domain whole-field fluorescence lifetime imaging with optical sectioning Prog. React. Kinet. 4 239-257
[9]  
Gratton E.(2001)High resolution time-domain fluorescence lifetime imaging for biomedical applications J. Microsc. 203 246-209
[10]  
Jameson D. M.(1999)The determination of the time between excitation and emission for certain fluorescent solids J. Modern Optics 46 199-573