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Methods for analysis of time-resolved fluorescence data

机译:时间分辨荧光数据的分析方法

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We report the results of applying several deconvolution methods to estimate fluorescence decay curves and fluorescence lifetimes. The methods are applied to time-resolved fluorescence signals measured with a homemade spectrofluorometer. We measured the fluorescence emitted by three substances with known lifetimes: fluoresceine (4.03 ns), rhodamine 6G (4.08 ns), and rhodamine B (1.68 ns). Also we measured the fluorescence emitted by three mixtures of two substances. We review three deconvolution methods: Fourier transform, least-squares iterative reconvolution, and Laguerre functions. to estimate the intrinsic fluorescence of the samples. A program was developed in LabView 7.1 to apply the three deconvolution methods from the observed fluorescence signals and the instrumental response signal. We conclude from data analysis results, that deconvolution by Laguerre expansion provides the best approximation of fluorescence lifetimes, producing an error less than 0.8% for substances, and less than 2.5% for mixtures.
机译:我们报告了应用几种反卷积方法估算荧光衰减曲线和荧光寿命的结果。该方法适用于用自制的分光荧光计测量的时间分辨荧光信号。我们测量了三种已知寿命的物质发出的荧光:荧光素(4.03 ns),若丹明6G(4.08 ns)和若丹明B(1.68 ns)。我们还测量了两种物质的三种混合物发出的荧光。我们回顾了三种反卷积方法:傅立叶变换,最小二乘迭代重新卷积和Laguerre函数。估计样品的固有荧光。在LabView 7.1中开发了一个程序,以从观察到的荧光信号和仪器响应信号中应用三种解卷积方法。我们从数据分析结果中得出结论,通过拉盖尔展开进行的反卷积可提供最佳的荧光寿命近似值,物质的误差小于0.8%,混合物的误差小于2.5%。

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