Fluorescence decay deconvolution analysis to fit a multiexponential function by the nonlinear least squares method requires numerical calculation of a convolution integral. A linear approximation of the successive data of the instrument response function is proposed for the computation of the convolution integral. Deconvolution analysis of simulated fluorescence data were carried out to show that the linear approximation method is generally better when one of the lifetimes is comparable to the time interval between data
In this paper we advance the phase plane method for analysis of fluorescence intensity decays to tak...
A method of moments is presented for the analysis of convoluted fluorescence decay data when the imp...
Quantitative information can be obtained from fluorescent mixtures using the methods of least square...
Fluorescence decay deconvolution analysis to fit a multiexponential function by the nonlinear least ...
Fluorescence decay deconvolution analysis to fit a multiexponential function by the nonlinear least ...
Fluorescence decay experiments is one of the major sources of transient multiexponential signals. A ...
Considerable effort in instrument development has made possible detection of picosecond fluorescence...
A mathematical model of the fluorescence decay experiment based on linear systems theory is presente...
The original Laplace deconvolution of luminescence data, obtained with pulsed systems, is reviewed. ...
A computational procedure is described for the analysis of fluorescence decay data convolved with a ...
The deconvolution process is a key step for quantitative evaluation of fluorescence lifetime imaging...
This novel approach to the analysis of multiexponential functions is based on the combined use of th...
Recently it has become possible to measure fluorescence phase-shift and modulation data over a wide ...
Fast deconvolution is an essential step to calibrate instrument responses in big fluorescence lifeti...
Recently it has become possible to measure fluorescence phase-shift and modulation data over a wide ...
In this paper we advance the phase plane method for analysis of fluorescence intensity decays to tak...
A method of moments is presented for the analysis of convoluted fluorescence decay data when the imp...
Quantitative information can be obtained from fluorescent mixtures using the methods of least square...
Fluorescence decay deconvolution analysis to fit a multiexponential function by the nonlinear least ...
Fluorescence decay deconvolution analysis to fit a multiexponential function by the nonlinear least ...
Fluorescence decay experiments is one of the major sources of transient multiexponential signals. A ...
Considerable effort in instrument development has made possible detection of picosecond fluorescence...
A mathematical model of the fluorescence decay experiment based on linear systems theory is presente...
The original Laplace deconvolution of luminescence data, obtained with pulsed systems, is reviewed. ...
A computational procedure is described for the analysis of fluorescence decay data convolved with a ...
The deconvolution process is a key step for quantitative evaluation of fluorescence lifetime imaging...
This novel approach to the analysis of multiexponential functions is based on the combined use of th...
Recently it has become possible to measure fluorescence phase-shift and modulation data over a wide ...
Fast deconvolution is an essential step to calibrate instrument responses in big fluorescence lifeti...
Recently it has become possible to measure fluorescence phase-shift and modulation data over a wide ...
In this paper we advance the phase plane method for analysis of fluorescence intensity decays to tak...
A method of moments is presented for the analysis of convoluted fluorescence decay data when the imp...
Quantitative information can be obtained from fluorescent mixtures using the methods of least square...