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多通道记录的驻留时间分析有多强大?

How powerful is the dwell-time analysis of multichannel records?

作者信息

Blunck R, Kirst U, Riessner T, Hansen U

机构信息

Institute of Applied Physics, University of Kiel, 24098 Kiel, Germany.

出版信息

J Membr Biol. 1998 Sep 1;165(1):19-35. doi: 10.1007/s002329900417.

Abstract

Exact algorithms for the kinetic analysis of multichannel patch-clamp records require hours to days for a single record. Thus, it may be reasonable to use a fast but less accurate method for the analysis of all data sets and to use the results for a reanalysis of some selected records with more sophisticated approaches. For the first run, the tools of single-channel analysis were used for the evaluation of the single-channel rate constants from multichannel dwell-time histograms. This could be achieved by presenting an ensemble of single channels by a "macrochannel" comprising all possible states of the ensemble of channels. Equations for the calculations of the elements of the macrochannel transition matrix and for the steady-state concentrations for individual states are given. Simulations of multichannel records with 1 to 8 channels with two closed and one open states and with 2 channels with two open and two closed states were done in order to investigate under which conditions the one-dimensional dwell-time analysis itself already provides reliable results. Distributions of the evaluated single-channel rate constants show that a bias of the estimations of the single-channel rate constants of 10 to 20% has to be accepted. The comparison of simulations with signal-to-noise ratios of SNR = 1 or SNR = 25 demonstrates that the major problem is not the convergence of the fitting routine, but failures of the level detector algorithm which creates the dwell-times distributions from noisy time series. The macrochannel presentation allows the incorporation of constraints like channel interaction. The evaluation of simulated 4-channel records in which the rate-constant of opening increased by 20% per already open channel could reveal the interaction factor.

摘要

用于多通道膜片钳记录动力学分析的精确算法,对单个记录进行分析需要数小时至数天时间。因此,对于所有数据集的分析使用一种快速但精度稍低的方法,并将结果用于用更复杂方法对一些选定记录进行重新分析,可能是合理的。在首次运行时,单通道分析工具被用于从多通道驻留时间直方图评估单通道速率常数。这可以通过用一个包含通道集合所有可能状态的“宏通道”来呈现单通道集合来实现。给出了计算宏通道转移矩阵元素和各个状态稳态浓度的方程。为了研究在哪些条件下一维驻留时间分析本身就能提供可靠结果,对具有两个关闭状态和一个开放状态的1至8个通道以及具有两个开放状态和两个关闭状态的2个通道的多通道记录进行了模拟。评估得到的单通道速率常数分布表明,必须接受单通道速率常数估计有10%至20%的偏差。对信噪比为SNR = 1或SNR = 25的模拟进行比较表明,主要问题不是拟合程序的收敛性,而是从有噪声的时间序列创建驻留时间分布的电平检测算法的失败。宏通道表示法允许纳入诸如通道相互作用等约束条件。对模拟的4通道记录进行评估,其中每个已开放通道的开放速率常数增加20%,可以揭示相互作用因子。

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