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Assessment of the mean-value of 17-hydroxypregnenolone in the umbilical blood of newborns by the exploratory analysis of biochemical data.

机译:通过对生化数据的探索性分析评估新生儿脐血中17-羟基孕烯醇酮的平均值。

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摘要

The main aim of data analysis in biochemical metrology is the extraction of relevant information from biochemical data measurements. A system of extended exploratory data analysis (EDA) based on the concept of graphical tools for sample data summarization and exploration is proposed and the original EDA algorithm in S-Plus is available on the Internet at http://www.trilobyte.cz/EDA. To check basic assumptions about biochemical and medical data is to examine the independence of sample elements, sample normality and homogeneity. The exact assessment of the mean-value and the variance of steroid levels in controls is necessary for the correct assessment of the samples from patients. Data examination procedures are illustrated by a determination of the mean-value of 17-hydroxypregnenolone in the umbilical blood of newborns. For an asymmetric, strongly skewed sample distribution corrupted with outliers the best estimate of location seems to be the median. The Box-Cox transformation improves a sample symmetry. The proposed procedure gives reliable estimates of a mean-value for an asymmetric distribution of 17-hydroxypregnenolone when the arithmetic mean can not be used.
机译:生化计量学中数据分析的主要目的是从生化数据测量中提取相关信息。提出了一种基于图形工具概念的扩展探索性数据分析(EDA)系统,用于样本数据的汇总和探索,S-Plus中的原始EDA算法可在Internet上找到,网址为http://www.trilobyte.cz/ EDA。检查有关生化和医学数据的基本假设是检查样品元素的独立性,样品正常性和均质性。准确评估对照组中类固醇水平的平均值和方差对于正确评估患者样品是必要的。通过确定新生儿脐带血中17-羟基孕烯醇酮的平均值来说明数据检查程序。对于因异常值损坏的不对称,严重偏斜的样本分布,位置的最佳估计值似乎是中位数。 Box-Cox变换可改善样本对称性。当不能使用算术平均值时,所提出的方法可以可靠地估计17-羟基孕烯醇酮的不对称分布的平均值。

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