A new incomplete decay signal model is proposed to describe the incomplete decay effects in a time-correlated single-photon counting (TCSPC) based fluorescence lifetime imaging (FLIM) system. Based on this model, we modified a MUltiple SIgnal Classification (MUSIC) algorithm to eliminate the incomplete decay effects. Monte Carlo simulations were carried out to demonstrate the performances of the proposed approach. Simulations show that the proposed method is insensitive to the laser pulse rate and has a larger lifetime dynamic range compared with previously reported approaches. As far as we know, this new method is the first non-fitting method that can resolve incomplete decay effects for multi-exponential decays
AbstractChanging the data representation from the classical time delay histogram to the phasor repre...
Estimation of signal parameters via rotational invariance techniques is a classical algorithm widely...
The photomultipliers used in single photon counting fluorescence lifetime Systems have a time respon...
A new incomplete decay signal model is proposed to describe the incomplete decay effects in a time-c...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
Intensity- and amplitude-weighted average lifetimes, denoted as τ I and τ A hereafter, are useful in...
The expectation-maximisation (EM) algorithm uses incomplete data to get the estimation of the probab...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
Time-correlated single photon counting (TCSPC) is commonly used to measure the lifetime of fluoresce...
An extremely rapid technique for deconvolving single exponential luminescence decay data is describe...
In this thesis, two methods for recovering underlying lifetime distributions from single photon coun...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
The multiple signal classification algorithm has been widely used in array signal processing for dir...
Considerable effort in instrument development has made possible detection of picosecond fluorescence...
Analyzing large fluorescence lifetime imaging (FLIM) data is becoming overwhelming; the latest FLIM ...
AbstractChanging the data representation from the classical time delay histogram to the phasor repre...
Estimation of signal parameters via rotational invariance techniques is a classical algorithm widely...
The photomultipliers used in single photon counting fluorescence lifetime Systems have a time respon...
A new incomplete decay signal model is proposed to describe the incomplete decay effects in a time-c...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
Intensity- and amplitude-weighted average lifetimes, denoted as τ I and τ A hereafter, are useful in...
The expectation-maximisation (EM) algorithm uses incomplete data to get the estimation of the probab...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
Time-correlated single photon counting (TCSPC) is commonly used to measure the lifetime of fluoresce...
An extremely rapid technique for deconvolving single exponential luminescence decay data is describe...
In this thesis, two methods for recovering underlying lifetime distributions from single photon coun...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
The multiple signal classification algorithm has been widely used in array signal processing for dir...
Considerable effort in instrument development has made possible detection of picosecond fluorescence...
Analyzing large fluorescence lifetime imaging (FLIM) data is becoming overwhelming; the latest FLIM ...
AbstractChanging the data representation from the classical time delay histogram to the phasor repre...
Estimation of signal parameters via rotational invariance techniques is a classical algorithm widely...
The photomultipliers used in single photon counting fluorescence lifetime Systems have a time respon...