两种自动尿液细胞检测系统的比较:Sysmex®UF-1000i和Beckman Coulter®DxU 850 Iris。

Bladder (San Francisco, Calif.) Pub Date : 2024-11-29 eCollection Date: 2024-01-01 DOI:10.14440/bladder.2024.0004
Abderrazak Saddari, Said Ezrari, Mohammed Dalli, Elmostapha Benaissa, Yassine Ben Lahlou, Mostafa Elouennass, Adil Maleb
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引用次数: 0

摘要

背景:尿路感染是指尿路中存在细菌或酵母菌,是继呼吸道感染之后最常见的社区获得性感染。尿细胞细菌学检查(CBEU)仍然是尿路感染的主要诊断测试,也是微生物实验室最常进行的测试。直接检查是CBEU的关键步骤,可以评估细胞学,包括白细胞和红细胞,以及在大量存在时鉴定晶体,上皮细胞和微生物。该检查还提供了指导临床决策的初步结果。虽然尿液细胞学的标准方法是显微镜检查,但自动化提供了几个优势,包括具有更高重复性的标准化结果,改进的再现性,增加的样品吞吐量,以及无缝的数据传输到实验室信息系统。目的:本研究旨在比较两种自动尿液细胞学系统的性能:Sysmex UF-1000i和Beckman Coulter DxU 850 Iris。方法:我们描述了每个系统的方法和技术基础,并评估了它们的分析性能。UF-1000i使用流式细胞术对基于前向散射、荧光和自适应分型分析的颗粒进行客观表征和鉴定。相比之下,尿液显微镜分析仪DxU-850 Iris采用专有的数字流形态技术和自动颗粒识别软件来分离、识别和表征颗粒的数字图像。结论:我们的比较表明,这两种系统都表现得非常好,提供的结果是相当的,在某些情况下,优于通过光学显微镜的参考方法获得的结果。
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Comparison of two automated urine cytometry systems: Sysmex® UF-1000i and Beckman Coulter® DxU 850 Iris.

Background: Urinary tract infection, defined as the presence of bacteria or yeast in the urinary tract, is the most common community-acquired infection after respiratory infections. The cytobacteriological examination of urine (CBEU) remains the primary diagnostic test for urinary tract infections and is the most frequently conducted test in microbiology laboratories. Direct examination is a crucial step of CBEU, enabling the assessment of cytology, including leukocytes and red blood cells, as well as the identification of crystals, epithelial cells, and microorganisms when present in significant quantities. This examination also provides preliminary results that can guide clinical decision-making. While the standard method for urine cytology is a microscopic examination, automation offers several advantages, including standardized results with higher repeatability, improved reproducibility, increased sample throughput, and seamless data transfer to laboratory information systems.

Objectives: This study aimed to compare the performance of two automated urine cytology systems: Sysmex UF-1000i and the Beckman Coulter DxU 850 Iris.

Methods: We described the methodology and technology underlying each system and assessed their analytical performance. The UF-1000i uses flow cytometry for the objective characterization and identification of particles based on forward scattering, fluorescence, and adaptive typing analysis. In contrast, the DxU-850 Iris, a urine microscopy analyzer, employs proprietary digital flow morphology technology alongside automatic particle recognition software to isolate, identify, and characterize digital images of particles.

Conclusion: Our comparison showed that both systems performed exceptionally well, delivering results that are comparable, and, in some cases, superior to, those obtained through the reference method of optical microscopy.

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