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Practical and theoretical implications of target values in clinical chemistry: a QC approach

机译:目标值在临床化学中的实践和理论意义:一种质量控制方法

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摘要

The automation of test validation procedures in a routine clinical laboratory by integrating artificial intelligence with the lab information system ( LIS) is the focus of this study. Test validation consists of three "layers": (1) acceptance of patient results based on technical criteria ("technical validation"), (2) acceptance of patient results based on internal quality control ( QC) results ("QC validation") and (3) medical validation of the patient protocol. The emphasis here is put on QC validation. General concepts regarding the setting of performance limits for internal QC results are briefly reviewed. As a practical example, we describe how the different layers of test validation were integrated with Molis, a LIS (Sysmex, Barchon, Belgium) used in a routine clinical biochemistry lab. PGP5 software (PGP, Brussels, Belgium) is used for technical validation and is installed on a Linx work-cell (Thermo Clinical Labsystems, Vantaa, Finland). The latter integrates four different Vitros instruments (OCD, Beerse, Belgium). QC validation and medical validation are performed with QC-Today (IL, Zaventem, Belgium) and VALAB (Erim, Toulouse, France), respectively. Both programs are bi-directionally coupled with the LIS. After 2 years of experience with this integrated system, it is clear that automation of validation rules and procedures has enhanced efficiency and overall quality of patient results.
机译:通过将人工智能与实验室信息系统(LIS)集成在一起,在常规临床实验室中实现测试验证程序的自动化是本研究的重点。测试验证包括三个“层”:(1)根据技术标准接受患者结果(“技术验证”),(2)根据内部质量控制(QC)结果接受患者结果(“ QC验证”)和(3)对患者方案进行医学验证。这里重点放在质量控制验证上。简要回顾了有关内部质量控制结果性能极限设置的一般概念。作为一个实际的例子,我们描述了如何将测试验证的不同层与常规临床生化实验室中使用的LIS(Sysmex,比利时Barchon)的Molis集成在一起。 PGP5软件(PGP,比利时布鲁塞尔)用于技术验证,并安装在Linx工作单元(Thermo Clinical Labsystems,Vantaa,芬兰)上。后者集成了四种不同的Vitros仪器(OCD,Beerse,比利时)。 QC验证和医学验证分别通过QC-Today(IL,比利时Zaventem,比利时)和VALAB(法国,图卢兹,Erim)进行。这两个程序都与LIS双向耦合。在使用该集成系统2年的经验之后,很明显,验证规则和程序的自动化提高了患者结果的效率和整体质量。

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