A new algorithm for the Maximum Entropy Method (MEM) is proposed for recovering the lifetime distribution in time-resolved fluorescence decays. The procedure is based on seeking the distribution that maximizes the Skilling entropy function subjected to the chi-squared constraint chi (2) similar to 1 through iterative linear approximations, LU decomposition of the Hessian matrix of the lagrangian problem and the Golden Section Search for backtracking. The accuracy of this algorithm has been investigated through comparisons with simulated fluorescence decays both of narrow and broad lifetime distributions. The proposed approach is capable to analyse datasets of up to 4,096 points with a discretization ranging from 100 to 1,000 lifetimes. A go...
Bayes' theorem provides a probabilistic framework for attacking the problem of data analysis. This f...
It is well-known that the fatigue lives of materials and structures have a considerable amount of sc...
We describe a method for analysis of single-molecule Förster resonance energy transfer (FRET) burst ...
A new algorithm for the Maximum Entropy Method (MEM) is proposed for recovering the lifetime distrib...
A new algorithm based on the Maximum Entropy Method (MEM) is proposed for recovering both the lifeti...
Maximum entropy method (MEM) was used for resolving multiple decay components in synthetic and exper...
In this thesis, two methods for recovering underlying lifetime distributions from single photon coun...
The maximum entropy method (MEM) is used to analyze time-resolved pulse-fluorescence spectrometry. T...
The maximum entropy method (MEM) was used for the analysis of polarized fluorescence decays of enhan...
The analysis of the fluorescence decay using discrete exponential components assumes that a small nu...
The analysis of the fluorescence decay using discrete exponential components assumes that a small nu...
We discuss the application of the maximum entropy method (MEM) to the extraction of rate distributio...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
We describe a method for analysis of single-molecule Förster resonance energy transfer (FRET) burst...
Ce travail présente un nouvel estimateur de la distribution de la durée de vie en fluorescence. Un é...
Bayes' theorem provides a probabilistic framework for attacking the problem of data analysis. This f...
It is well-known that the fatigue lives of materials and structures have a considerable amount of sc...
We describe a method for analysis of single-molecule Förster resonance energy transfer (FRET) burst ...
A new algorithm for the Maximum Entropy Method (MEM) is proposed for recovering the lifetime distrib...
A new algorithm based on the Maximum Entropy Method (MEM) is proposed for recovering both the lifeti...
Maximum entropy method (MEM) was used for resolving multiple decay components in synthetic and exper...
In this thesis, two methods for recovering underlying lifetime distributions from single photon coun...
The maximum entropy method (MEM) is used to analyze time-resolved pulse-fluorescence spectrometry. T...
The maximum entropy method (MEM) was used for the analysis of polarized fluorescence decays of enhan...
The analysis of the fluorescence decay using discrete exponential components assumes that a small nu...
The analysis of the fluorescence decay using discrete exponential components assumes that a small nu...
We discuss the application of the maximum entropy method (MEM) to the extraction of rate distributio...
We present novel Bayesian methods for the analysis of exponential decay data that exploit the eviden...
We describe a method for analysis of single-molecule Förster resonance energy transfer (FRET) burst...
Ce travail présente un nouvel estimateur de la distribution de la durée de vie en fluorescence. Un é...
Bayes' theorem provides a probabilistic framework for attacking the problem of data analysis. This f...
It is well-known that the fatigue lives of materials and structures have a considerable amount of sc...
We describe a method for analysis of single-molecule Förster resonance energy transfer (FRET) burst ...