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Evaluating flow cytometer performance with weighted quadratic least squares analysis of LED and multi-level bead data

机译:使用加权二次方最小二乘分析LED和多级磁珠数据评估流式细胞仪性能

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摘要

We developed a fully automated procedure for analyzing data from LED pulses and multi-level bead sets to evaluate backgrounds and photoelectron scales of cytometer fluorescence channels.The method improves on previous formulations by fitting a full quadratic model with appropriate weighting and by providing standard errors and peak residuals as well as the fitted parameters themselves. Here we describe the details of the methods and procedures involved and present a set of illustrations and test cases that demonstrate the consistency and reliability of the results.The automated analysis and fitting procedure is generally quite successful in providing good estimates of the Spe (statistical photoelectron) scales and backgrounds for all of the fluorescence channels on instruments with good linearity. The precision of the results obtained from LED data is almost always better than for multi-level bead data, but the bead procedure is easy to carry out and provides results good enough for most purposes. Including standard errors on the fitted parameters is important for understanding the uncertainty in the values of interest. The weighted residuals give information about how well the data fits the model, and particularly high residuals indicate bad data points.Known photoelectron scales and measurement channel backgrounds make it possible to estimate the precision of measurements at different signal levels and the effects of compensated spectral overlap on measurement quality. Combining this information with measurements of standard samples carrying dyes of biological interest, we can make accurate comparisons of dye sensitivity among different instruments.Our method is freely available through the R/Bioconductor package flowQB.
机译:我们开发了一套全自动程序来分析LED脉冲和多级珠子集的数据,以评估细胞仪荧光通道的背景和光电子规模。该方法通过对整个二次模型进行适当的加权拟合并提供标准误差和峰值残差以及拟合参数本身。在这里,我们描述了所涉及的方法和程序的详细信息,并提供了一系列说明和测试案例,以证明结果的一致性和可靠性。自动分析和拟合程序通常在提供Spe(统计光电子)的良好估计方面非常成功。 )具有良好线性度的仪器上所有荧光通道的比例和背景。从LED数据获得的结果的精度几乎总是比多级磁珠数据要好,但是磁珠过程易于执行,并且可以为大多数目的提供足够好的结果。在拟合参数中包括标准误差对于理解目标值的不确定性很重要。加权残差可提供有关数据拟合模型的信息,特别是高残差表示不良数据点。已知的光电子标度和测量通道背景可用于估计不同信号水平下的测量精度以及补偿光谱重叠的影响在测量质量上。将这些信息与携带生物感兴趣染料的标准样品的测量结果结合起来,我们可以在不同仪器之间进行准确的染料敏感性比较。我们的方法可通过R / Bioconductor软件包flowQB免费获得。

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