Correction of systematic phase errors in frequency-domain fluorometry

J. Pouget, J. Mugnier, B. Valeur
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引用次数: 24

Abstract

In frequency-domain fluorometry, the phase shift and relative modulation are measured with respect to a reference solution. Systematic timing errors can be avoided if a fluorophore of known lifetime is used as a reference. However, this reference fluorophore must fulfil several stringent requirements which are not always met by common reference fluorophores. The authors suggest an alternative method in which the measurements of phase shift and relative modulation are performed by using a scattering suspension as a reference, and the systematic phase errors are corrected afterwards thanks to a separate calibration of the instrument. Such a calibration is possible because it is demonstrated that the timing errors result in a frequency-independent time shift. The value of this time shift can be readily determined by analysis of the phase and modulation values obtained with a fluorophore which is excitable and observable at wavelengths comparable with those used in the experiment to be performed. No previous knowledge of the lifetime is required. The validity of this method is demonstrated by the resolution of closely spaced two-component decays and by the determination of very short lifetimes.
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频域荧光法中系统相位误差的校正
在频域荧光法中,相移和相对调制是相对于参考溶液进行测量的。如果使用已知寿命的荧光团作为参考,则可以避免系统定时误差。然而,这种参考荧光团必须满足几个严格的要求,而这些要求并不总是由普通参考荧光团满足。作者提出了一种替代方法,即使用散射悬架作为参考进行相移和相对调制的测量,然后通过对仪器的单独校准来校正系统相位误差。这种校准是可能的,因为它证明了定时误差会导致频率无关的时移。这个时移的值可以很容易地通过分析用荧光团获得的相位和调制值来确定,荧光团是可激发的,并且在与要进行的实验中使用的波长相当的波长下可观察到。不需要预先了解寿命。该方法的有效性通过对紧密间隔双组分衰减的分辨和对极短寿命的测定得到了证明。
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