Lakowicz J R, Laczko G, Cherek H, Gratton E, Limkeman M
Biophys J. 1984 Oct;46(4):463-77. doi: 10.1016/S0006-3495(84)84043-6.
Recently it has become possible to measure fluorescence phase-shift and modulation data over a wide range of modulation frequencies. In this paper we describe the analysis of these data by the method of nonlinear least squares to determine the values of the lifetimes and fractional intensities for a mixture of exponentially decaying fluorophores. Analyzing simulated data allowed us to determine those experimental factors that are most critical for successfully resolving the emissions from mixtures of fluorophores. The most critical factors are the accuracy of the experimental data, the relative difference of the individual decay times, and the inclusion of data measured at multiple emission wavelengths. After measuring at eight widely spaced modulation frequencies, additional measurements yielded only a modest increase in resolution. In particular, the uncertainty in the parameters decreased approximately as the reciprocal of the square root of the number of modulation frequencies. Our simulations showed that with presently available precision and data for one emission bandpass, two decay times could be accurately determined if their ratio were greater than or equal to 1.4. Three exponential decays could also be resolved, but only if the range of the lifetimes were fivefold or greater. To reliably determine closely-spaced decay times, the data were measured at multiple emission wavelengths so that the fractional intensities of the components could be varied. Also, independent knowledge of any of the parameters substantially increased the accuracy with which the remaining parameters could be determined. In the subsequent paper we present experimental results that broadly confirm the predicted resolving potential of variable-frequency phase-modulation fluorometry.
最近,在很宽的调制频率范围内测量荧光相移和调制数据已成为可能。在本文中,我们描述了通过非线性最小二乘法对这些数据进行分析,以确定指数衰减荧光团混合物的寿命值和分数强度。对模拟数据的分析使我们能够确定那些对于成功解析荧光团混合物发射最为关键的实验因素。最关键的因素是实验数据的准确性、各个衰减时间的相对差异以及在多个发射波长处测量的数据。在八个间隔较大的调制频率下进行测量后,额外的测量仅使分辨率有适度提高。特别是,参数的不确定性大约随着调制频率数量平方根的倒数而降低。我们的模拟表明,对于目前一个发射带通的精度和数据,如果两个衰减时间的比值大于或等于1.4,则可以准确确定它们。三个指数衰减也可以分辨,但前提是寿命范围为五倍或更大。为了可靠地确定间隔很近的衰减时间,在多个发射波长处测量数据,以便各组分的分数强度可以变化。此外,对任何一个参数的独立了解都大大提高了确定其余参数的准确性。在后续论文中,我们展示了实验结果,这些结果大致证实了变频相位调制荧光法的预测分辨潜力。