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等温滴定量热法中统计误差的研究。

A study of statistical error in isothermal titration calorimetry.

作者信息

Tellinghuisen Joel

机构信息

Department of Chemistry, Vanderbilt University, Nashville, TN 37235, USA.

出版信息

Anal Biochem. 2003 Oct 1;321(1):79-88. doi: 10.1016/s0003-2697(03)00406-8.

Abstract

In isothermal titration calorimetry (ITC), the two main sources of random (statistical) error are associated with the extraction of the heat q from the measured temperature changes and with the delivery of metered volumes of titrant. The former leads to uncertainty that is approximately constant and the latter to uncertainty that is proportional to q. The role of these errors in the analysis of ITC data by nonlinear least squares is examined for the case of 1:1 binding, M+X right arrow over left arrow MX. The standard errors in the key parameters-the equilibrium constant Ko and the enthalpy DeltaHo-are assessed from the variance-covariance matrix computed for exactly fitting data. Monte Carlo calculations confirm that these "exact" estimates will normally suffice and show further that neglect of weights in the nonlinear fitting can result in significant loss of efficiency. The effects of the titrant volume error are strongly dependent on assumptions about the nature of this error: If it is random in the integral volume instead of the differential volume, correlated least-squares is required for proper analysis, and the parameter standard errors decrease with increasing number of titration steps rather than increase.

摘要

在等温滴定量热法(ITC)中,随机(统计)误差的两个主要来源与从测量的温度变化中提取热量q以及滴定剂计量体积的输送有关。前者导致的不确定度近似恒定,而后者导致的不确定度与q成比例。对于1:1结合反应M + X ⇌ MX的情况,研究了这些误差在通过非线性最小二乘法分析ITC数据中的作用。通过为精确拟合数据计算的方差 - 协方差矩阵评估关键参数——平衡常数Kₒ和焓变ΔHₒ的标准误差。蒙特卡罗计算证实,这些“精确”估计通常就足够了,并且进一步表明在非线性拟合中忽略权重会导致效率显著损失。滴定剂体积误差的影响强烈依赖于关于该误差性质的假设:如果它在积分体积而非微分体积中是随机的,则需要进行相关最小二乘法来进行正确分析,并且参数标准误差会随着滴定步数的增加而减小而非增大。

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