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确保生化分析仪检测结果的准确性和一致性:中国医院实验室中仪器及仪器间项目比较的化学计量学

Ensure the accuracy and consistency of biochemical analyzer test results: Chemometrics for instrument and inter-instrument item comparison in Chinese hospital laboratory.

作者信息

Song Xue-Dong, Li Shou-Xia, Qin Zhi-Mei, Chen Ding-Li, Guo Li-Li, Liu Cai-Ru, Yang Xiao, Peng Ke-Nan, Dai Er-Hei

机构信息

Department of Laboratory Medicine, Handan Central Hospital, Hebei Medical University, Handan, Hebei, 056001, China.

Department of Laboratory Medicine, Hebei General Hospital, Hebei Medical University, Shijiazhuang, Hebei, 050051, China.

出版信息

Heliyon. 2024 Jan 6;10(1):e24306. doi: 10.1016/j.heliyon.2024.e24306. eCollection 2024 Jan 15.

Abstract

Biochemical analyzers are vital instruments that utilize the principle of photoelectric colorimetry to quantify a specific chemical composition in body fluids. This analysis provides critical data for the diagnosis, treatment, prognosis, and overall health status of various diseases in clinical practice. However, the performance of a biochemical analyzer can vary significantly between different brands or over time within the same brand. Therefore, it is imperative to regularly assess the performance of the analyzer to ensure consistent results for longitudinal studies and to maintain day-to-day data consistency. Additionally, when multiple analyzers are utilized, it is necessary to evaluate the performance of each instrument to ensure accurate results across multiple platforms. In this study, we developed and verified an experimental evaluation scheme for the analytical performance of the instrument, chemometrics for biochemical analyzers, utilizing national reference materials and patient sera as the experimental subjects. We evaluated the performance of the optical system, temperature control system, sample-adding system, and detection system to confirm the feasibility of this scheme. We also compared the analytical performance of different brands of biochemical analyzers for routine biochemical tests, such as liver function, kidney function, ion, blood lipids, blood glucose, and myocardial enzyme spectrum. Using the AU 5400 as a control and the ADVIA 2400 as the comparison system, the relative variation in inter-instrument comparison data was found to be acceptable at the clinical medicine decision level. In conclusion, the performance of a biochemical analyzer can vary significantly between different brands or over time within the same brand. Regular evaluations are necessary to ensure accurate and consistent results across different analyzers. This study provides a feasible scheme for evaluating the analytical performance of biochemical analyzers that can be used to ensure the accuracy and consistency of the results of different brands of automatic chemical analyzers in the laboratory.

摘要

生化分析仪是利用光电比色原理对体液中的特定化学成分进行定量分析的重要仪器。该分析为临床实践中各种疾病的诊断、治疗、预后及整体健康状况提供关键数据。然而,不同品牌的生化分析仪性能可能存在显著差异,同一品牌的分析仪性能也可能随时间变化。因此,定期评估分析仪的性能对于纵向研究确保结果的一致性以及维持日常数据的一致性至关重要。此外,当使用多台分析仪时,有必要评估每台仪器的性能,以确保跨多个平台获得准确结果。在本研究中,我们开发并验证了一种针对仪器分析性能的实验评估方案,即利用国家参考物质和患者血清作为实验对象的生化分析仪化学计量学方法。我们评估了光学系统、温度控制系统、加样系统和检测系统的性能,以确认该方案的可行性。我们还比较了不同品牌生化分析仪对肝功能、肾功能、离子、血脂、血糖和心肌酶谱等常规生化检测项目的分析性能。以AU 5400作为对照,ADVIA 2400作为比较系统,发现在临床医学决策水平上仪器间比较数据的相对差异是可接受的。总之,不同品牌的生化分析仪性能可能存在显著差异,同一品牌的分析仪性能也可能随时间变化。定期评估对于确保不同分析仪结果的准确和一致是必要的。本研究提供了一种评估生化分析仪分析性能的可行方案,可用于确保实验室中不同品牌自动生化分析仪结果的准确性和一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bceb/10806288/ebbadd491128/gr1.jpg

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