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Fluorescence decay data analysis correcting for detector pulse pile-up at very high count rates

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arxiv 1711.01137 v3 pith:ACMRBCIX submitted 2017-09-29 physics.data-an physics.ins-detphysics.optics

Fluorescence decay data analysis correcting for detector pulse pile-up at very high count rates

classification physics.data-an physics.ins-detphysics.optics
keywords detectorpile-updecayfluorescencepulseratesanalysiscorrecting
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using Time-Correlated Single Photon Counting (TCSPC) for the purpose of fluorescence lifetime measurements is usually limited in speed due to pile-up. With modern instrumentation this limitation can be lifted significantly but some artefacts due to frequent merging of closely spaced detector pulses (detector pulse pile-up) remains an issue to be addressed. We propose here a data analysis method correcting for this type of artefact and the resulting systematic errors. It physically models the photon losses due to detector pulse pile-up and incorporates the loss in the decay fit model employed to obtain fluorescence lifetimes and relative amplitudes of the decay components. Comparison of results with and without this correction show a significant reduction of systematic errors at count rates approaching the excitation rate. This allows quantitatively accurate fluorescense lifetime imaging (FLIM) at very high frame rates.

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