A Recently Formulated Individual Control Chart Designed for Quality Control Applications within the Health-care Domain

Dler H Kadir, D. M. Saleh, D. Jamil
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Abstract

Quality control charts are based on data that is also used for various statistical analyses, such as regression, time series analysis, and other types of analyses. This implies that the data used to create these charts may contain outliers, potentially compromising their accuracy. To eliminate any potential noise or pollution from the data, a researcher proposed using wavelet shrinkage with a threshold and comparing the resulting data with Shewart's individual chart. Based on this, a new quality control chart was proposed and built using a universal approach for assessing the level of thresholding, representing the individual chart for wavelet haar with soft and hard thresholding. Following that, a comparison was performed between them as well as with Shewart's individual chart. This letter's most significant conclusion is that, in addition to using two real data points—triglyceride, which was recorded by a laboratory blood analyzer in Al-Jumhuri and at the specialized Center for Cardiology Hospital in Erbil Governorate—it may be possible to use wavelet shrinkage with a threshold to address issues of noise or pollution when Shewart's individual chart was made and used. Moreover, the wavelet method effectively reduces deviation, as demonstrated in both sets of data.
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最新制定的个人控制图,专为医疗保健领域的质量控制应用而设计
质量控制图所依据的数据也用于各种统计分析,如回归、时间序列分析和其他类型的分析。这意味着用于创建这些图表的数据可能包含异常值,从而可能影响其准确性。为了消除数据中可能存在的噪音或污染,一位研究人员建议使用带阈值的小波收缩,并将得到的数据与 Shewart 的单个图表进行比较。在此基础上,研究人员提出并建立了一个新的质量控制图,采用通用方法来评估阈值水平,代表了带有软阈值和硬阈值的小波哈氏个体图。随后,对它们以及 Shewart 的单个图表进行了比较。这封信最重要的结论是,除了使用两个真实数据点--Al-Jumhuri 实验室血液分析仪记录的甘油三酯和埃尔比勒省心脏病专科医院中心记录的甘油三酯--外,还可以使用带阈值的小波收缩来解决制作和使用 Shewart 个人图表时的噪音或污染问题。此外,如两组数据所示,小波方法可有效减少偏差。
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