We discuss the application of the maximum entropy method (MEM) to the extraction of rate distributions from kinetics experiments on the nanosecond to femtosecond time scale. We first present simulations to show the effects of data truncation (typical of nanosecond experiments) on rate distributions recovered by MEM. The stretched exponential decay is considered as an example to demonstrate that if the true distribution of rates for the underlying process includes faster time scales than are contained within the experimental data set, MEM can introduce unwarranted features that extend into the slower regions of rate space. This observation has relevance to the application of MEM to obtain rate distributions from kinetic experiments involving...
A new algorithm based on the Maximum Entropy Method (MEM) is proposed for recovering both the lifeti...
CO rebinding kinetics after nanosecond photolysis of myoglobin encapsulated in wet silica gels exhib...
The maximum entropy method (MEM) was used for the analysis of polarized fluorescence decays of enhan...
Rate processes in proteins are often not adequately described by simple exponential kinetics. Instea...
Rate processes in proteins are often not adequately described by simple exponential kinetics. Instea...
The maximum entropy method (MEM) is used to analyze time-resolved pulse-fluorescence spectrometry. T...
The maximum entropy method (MEM) is used to numerically invert the kinetics of ligand rebinding at l...
The problem of protein dynamics is introduced and its significance explained. Properties of the oxyg...
AbstractA hybrid analysis that combines the maximum entropy method (MEM) with nonlinear least square...
peer reviewedThe kinetic translational energy released in the unimolecular fragmentation reaction C6...
ABSTRACT A hybrid analysis that combines the maximum entropy method (MEM) with nonlinear least squar...
A new algorithm for the Maximum Entropy Method (MEM) is proposed for recovering the lifetime distrib...
Maximum entropy method (MEM) was used for resolving multiple decay components in synthetic and exper...
Purpose To assess the feasibility of using a hybrid Maximum-Entropy/Nonlinear Least Squares (MEM/NLS...
ABSTRACT: We present a principled approach for estimat-ing the matrix of microscopic transition prob...
A new algorithm based on the Maximum Entropy Method (MEM) is proposed for recovering both the lifeti...
CO rebinding kinetics after nanosecond photolysis of myoglobin encapsulated in wet silica gels exhib...
The maximum entropy method (MEM) was used for the analysis of polarized fluorescence decays of enhan...
Rate processes in proteins are often not adequately described by simple exponential kinetics. Instea...
Rate processes in proteins are often not adequately described by simple exponential kinetics. Instea...
The maximum entropy method (MEM) is used to analyze time-resolved pulse-fluorescence spectrometry. T...
The maximum entropy method (MEM) is used to numerically invert the kinetics of ligand rebinding at l...
The problem of protein dynamics is introduced and its significance explained. Properties of the oxyg...
AbstractA hybrid analysis that combines the maximum entropy method (MEM) with nonlinear least square...
peer reviewedThe kinetic translational energy released in the unimolecular fragmentation reaction C6...
ABSTRACT A hybrid analysis that combines the maximum entropy method (MEM) with nonlinear least squar...
A new algorithm for the Maximum Entropy Method (MEM) is proposed for recovering the lifetime distrib...
Maximum entropy method (MEM) was used for resolving multiple decay components in synthetic and exper...
Purpose To assess the feasibility of using a hybrid Maximum-Entropy/Nonlinear Least Squares (MEM/NLS...
ABSTRACT: We present a principled approach for estimat-ing the matrix of microscopic transition prob...
A new algorithm based on the Maximum Entropy Method (MEM) is proposed for recovering both the lifeti...
CO rebinding kinetics after nanosecond photolysis of myoglobin encapsulated in wet silica gels exhib...
The maximum entropy method (MEM) was used for the analysis of polarized fluorescence decays of enhan...