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Estimation of kinetic rate constants from multi-channel recordings by a direct fit of the time series.

机译:通过时间序列的直接拟合从多通道记录中估算动力学速率常数。

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摘要

The maximum-likelihood technique for the direct estimation of rate constants from the measured patch clamp current is extended to the analysis of multi-channel recordings, including channels with subconductance levels. The algorithm utilizes a simplified approach for the calculation of the matrix exponentials of the probability matrix from the rate constants of the Markov model of the involved channel(s) by making use of the Kronecker sum and product. The extension to multi-channel analysis is tested by the application to simulated data. For these tests, three different channel models were selected: a two-state model, a three-state model with two open states of different conductance, and a three-state model with two closed states. For the simulations, time series of these models were calculated from the related first-order, finite-state, continuous-time Markov processes. Blue background noise was added, and the signals were filtered by a digital filter similar to the anti-aliasing low-pass. The tests showed that the fit algorithm revealed good estimates of the original rate constants from time series of simulated records with up to four independent and identical channels even in the case of signal-to-noise ratios being as low as 2. The number of channels in a record can be determined from the dependence of the likelihood on channel number. For large enough data sets, it takes on a maximum when the assumed channel number is equal to the "true" channel number.
机译:从测得的贴片钳电流直接估算速率常数的最大似然技术已扩展到多通道记录的分析,包括具有亚电导水平的通道。该算法利用简化的方法,通过利用Kronecker和和乘积,根据所涉及通道的马尔可夫模型的速率常数来计算概率矩阵的矩阵指数。应用程序对模拟数据测试了多通道分析的扩展。对于这些测试,选择了三个不同的通道模型:一个二状态模型,一个具有两个电导率不同的打开状态的三状态模型以及一个具有两个闭合状态的三状态模型。为了进行仿真,这些模型的时间序列是根据相关的一阶有限状态连续时间马尔可夫过程计算的。添加了蓝色背景噪声,并且使用类似于抗混叠低通的数字滤波器对信号进行了滤波。测试表明,即使在信噪比低至2的情况下,拟合算法仍可以通过多达四个独立且相同的通道从模拟记录的时间序列中很好地估计出原始速率常数。可以根据似然性对信道号的依赖关系来确定记录中的比特数。对于足够大的数据集,当假定的通道号等于“ true”通道号时,它将取最大值。

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