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phi2FLIM:一种用于无混叠频域荧光寿命成像的技术。

phi2FLIM: a technique for alias-free frequency domain fluorescence lifetime imaging.

作者信息

Elder Alan D, Kaminski Clemens F, Frank Jonathan H

机构信息

Department of Chemical Engineering, University of Cambridge, Cambridge, CB2 3RA, UK.

出版信息

Opt Express. 2009 Dec 7;17(25):23181-203. doi: 10.1364/OE.17.023181.

Abstract

A new approach to alias-free wide-field fluorescence lifetime imaging in the frequency domain is demonstrated using a supercontinuum source for fluorescence excitation and a phase-modulated image intensifier for detection. This technique is referred to as phi-squared fluorescence lifetime imaging (phi(2)FLIM). The phase modulation and square-wave gating of the image intensifier eliminate aliasing by the effective suppression of higher harmonics. The ability to use picosecond excitation pulses without aliasing expands the range of excitation sources available for frequency-domain fluorescence lifetime imaging (fd-FLIM) and improves the modulation depth of conventional homodyne fd-FLIM measurements, which use sinusoidal intensity modulation of the excitation source. The phi(2)FLIM results are analyzed using AB-plots, which facilitate the identification of mono-exponential and multi-exponential fluorescence decays and provide measurements of the fluorophore fractions in two component mixtures. The rapid acquisition speed of the technique enables lifetime measurements in dynamic systems, such as temporally evolving samples and samples that are sensitive to photo-bleaching. Rapid phi(2)FLIM measurements are demonstrated by imaging the dynamic mixing of two different dye solutions at 5.5 Hz. The tunability of supercontinuum radiation enables excitation wavelength resolved FLIM measurements, which facilitates analysis of samples containing multiple fluorophores with different absorption spectra.

摘要

利用超连续谱源进行荧光激发和相位调制图像增强器进行检测,展示了一种频域中无混叠宽场荧光寿命成像的新方法。该技术被称为二次方荧光寿命成像(phi(2)FLIM)。图像增强器的相位调制和方波选通通过有效抑制高次谐波消除了混叠。能够使用皮秒激发脉冲而无混叠,扩展了可用于频域荧光寿命成像(fd-FLIM)的激发源范围,并提高了传统零差fd-FLIM测量的调制深度,传统测量使用激发源的正弦强度调制。使用AB图分析phi(2)FLIM结果,这有助于识别单指数和多指数荧光衰减,并提供两组分混合物中荧光团分数的测量。该技术的快速采集速度能够在动态系统中进行寿命测量,例如随时间演变的样品和对光漂白敏感的样品。通过以5.5 Hz的频率对两种不同染料溶液的动态混合进行成像,展示了快速phi(2)FLIM测量。超连续谱辐射的可调谐性使得能够进行激发波长分辨的FLIM测量,这有助于分析包含具有不同吸收光谱的多种荧光团的样品。

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