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从肌肉细胞钙瞬变中确定钙释放通量的数值方法。

Numerical methods to determine calcium release flux from calcium transients in muscle cells.

作者信息

Timmer J, Müller T, Melzer W

机构信息

Fakultät für Physik, Albert-Ludwigs-Universität, Freiburg, Germany.

出版信息

Biophys J. 1998 Apr;74(4):1694-707. doi: 10.1016/S0006-3495(98)77881-6.

Abstract

Several methods are currently in use to estimate the rate of depolarization-induced calcium release in muscle cells from measured calcium transients. One approach first characterizes calcium removal of the cell. This is done by determining parameters of a reaction scheme from a fit to the decay of elevated calcium after the depolarizing stimulus. In a second step, the release rate during depolarization is estimated based on the fitted model. Using simulated calcium transients with known underlying release rates, we tested the fidelity of this analysis in determining the time course of calcium release under different conditions. The analysis reproduced in a satisfactory way the characteristics of the input release rate, even when the assumption that release had ended before the start of the fitting interval was severely violated. Equally good reconstructions of the release rate time course could be obtained when the model used for the analysis differed in structure from the one used for simulating the data. We tested the application of a new strategy (multiple shooting) for fitting parameters in nonlinear differential equation systems. This procedure rendered the analysis less sensitive to ill-chosen initial guesses of the parameters and to noise. A locally adaptive kernel estimator for calculating numerical derivatives allowed good reconstructions of the original release rate time course from noisy calcium transients when other methods failed.

摘要

目前有几种方法可用于根据测量的钙瞬变来估计肌肉细胞中去极化诱导的钙释放速率。一种方法首先对细胞的钙清除进行表征。这是通过从对去极化刺激后升高的钙的衰减拟合中确定反应方案的参数来完成的。在第二步中,基于拟合模型估计去极化期间的释放速率。我们使用具有已知潜在释放速率的模拟钙瞬变,测试了这种分析在确定不同条件下钙释放时间过程方面的准确性。即使在拟合区间开始之前释放已经结束的假设被严重违反的情况下,该分析仍以令人满意的方式重现了输入释放速率的特征。当用于分析的模型在结构上与用于模拟数据的模型不同时,也可以获得同样良好的释放速率时间过程重建。我们测试了一种用于拟合非线性微分方程系统参数的新策略(多重打靶法)的应用。该过程使分析对参数的初始猜测选择不当和噪声不太敏感。当其他方法失败时,一种用于计算数值导数的局部自适应核估计器能够从有噪声的钙瞬变中很好地重建原始释放速率时间过程。

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