AbstractFor single channel recordings, the maximum likelihood estimation (MLE) of kinetic rates and conductance is well established. A direct extrapolation of this method to macroscopic currents is computationally prohibitive: it scales as a power of the number of channels. An approximated MLE that ignored the local time correlation of the data has been shown to provide estimates of the kinetic parameters. In this article, an improved approximated MLE that takes into account the local time correlation is proposed. This method estimates the channel kinetics using both the time course and the random fluctuations of the macroscopic current generated by a homogeneous population of ion channels under white noise. It allows arbitrary kinetic mode...
The stochastic behavior of single ion channels is most often described as an aggregated continuous-t...
AbstractSingle-channel recordings provide unprecedented resolutions on kinetics of conformational ch...
We present here a maximal likelihood algorithm for estimating single-channel kinetic parameters from...
AbstractWe describe a maximum likelihood method for direct estimation of rate constants from macrosc...
The process underlying the opening and closing of ionic channels in biological or artificial lipid m...
AbstractPatch-clamp recording provides an unprecedented means for study of detailed kinetics of ion ...
The maximum-likelihood technique for the direct estimation of rate constants from the measured patch...
AbstractWe describe a new electrophysiological technique called nonequilibrium response spectroscopy...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractA method is presented for rapidly extracting single-channel transition rate constants from p...
A main ingredient for the understanding of structure/function correlates of ion channels is the quan...
AbstractHidden Markov models have recently been used to model single ion channel currents as recorde...
AbstractHidden Markov modeling (HMM) provides an effective approach for modeling single channel kine...
Conti and Stühmer (1989. Eur. Biophys. J. 17:53–59) have measured the nonstationary shot noise in th...
In this work, we propose a methodology based on Monte Carlo Markov chains to explore the parameter s...
The stochastic behavior of single ion channels is most often described as an aggregated continuous-t...
AbstractSingle-channel recordings provide unprecedented resolutions on kinetics of conformational ch...
We present here a maximal likelihood algorithm for estimating single-channel kinetic parameters from...
AbstractWe describe a maximum likelihood method for direct estimation of rate constants from macrosc...
The process underlying the opening and closing of ionic channels in biological or artificial lipid m...
AbstractPatch-clamp recording provides an unprecedented means for study of detailed kinetics of ion ...
The maximum-likelihood technique for the direct estimation of rate constants from the measured patch...
AbstractWe describe a new electrophysiological technique called nonequilibrium response spectroscopy...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractA method is presented for rapidly extracting single-channel transition rate constants from p...
A main ingredient for the understanding of structure/function correlates of ion channels is the quan...
AbstractHidden Markov models have recently been used to model single ion channel currents as recorde...
AbstractHidden Markov modeling (HMM) provides an effective approach for modeling single channel kine...
Conti and Stühmer (1989. Eur. Biophys. J. 17:53–59) have measured the nonstationary shot noise in th...
In this work, we propose a methodology based on Monte Carlo Markov chains to explore the parameter s...
The stochastic behavior of single ion channels is most often described as an aggregated continuous-t...
AbstractSingle-channel recordings provide unprecedented resolutions on kinetics of conformational ch...
We present here a maximal likelihood algorithm for estimating single-channel kinetic parameters from...