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首页> 外文期刊>Clinical chemistry and laboratory medicine: CCLM >Advancing haemostasis automation - Successful implementation of robotic centrifugation and sample processing in a tertiary service hospital
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Advancing haemostasis automation - Successful implementation of robotic centrifugation and sample processing in a tertiary service hospital

机译:推进止血自动化-在三级服务医院成功实施机器人离心和样本处理

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摘要

Background: Laboratories today face increasing pressure to automate operations due to increasing workloads and the need to reduce expenditure. Few studies to date have focussed on the laboratory automation of preanalytical coagulation specimen processing. In the present study, we examined whether a clinical chemistry automation protocol meets the preanalytical requirements for the analyses of coagulation. Methods: During the implementation of laboratory automation, we began to operate a pre- and postanalytical automation system. The preanalytical unit processes blood specimens for chemistry, immunology and coagulation by automated specimen processing. As the production of platelet-poor plasma is highly dependent on optimal centrifugation, we examined specimen handling under different centrifugation conditions in order to produce optimal platelet deficient plasma specimens. To this end, manually processed models centrifuged at 1500 g for 5 and 20 min were compared to an automated centrifugation model at 3000 g for 7 min. Results: For analytical assays that are performed frequently enough to be targets for full automation, Passing-Bablok regression analysis showed close agreement between different centrifugation methods, with a correlation coefficient between 0.98 and 0.99 and a bias between - 5% and + 6%. For seldom performed assays that do not mandate full automation, the Passing-Bablok regression analysis showed acceptable to poor agreement between different centrifugation methods. Conclusions: A full automation solution is suitable and can be recommended for frequent haemostasis testing.
机译:背景:由于工作量的增加和减少开支的需要,当今的实验室面临着越来越大的自动化操作压力。迄今为止,很少有研究集中在分析前凝血样品处理的实验室自动化上。在本研究中,我们检查了临床化学自动化方案是否满足凝血分析的分析前要求。方法:在实施实验室自动化过程中,我们开始运行分析前和分析后的自动化系统。分析前单元通过自动标本处理来处理血液标本以进行化学,免疫学和凝血。由于贫血小板血浆的产生高度依赖于最佳离心,因此我们检查了在不同离心条件下的标本处理,以产生最佳的血小板缺乏血浆标本。为此,将以1500 g离心5分钟和20分钟的手动处理模型与以3000 g离心7分钟的自动离心模型进行比较。结果:对于经常作为全自动目标的分析测定,Passing-Bablok回归分析显示了不同离心方法之间的一致性,相关系数在0.98和0.99之间,偏差在-5%和+ 6%之间。对于很少执行的,不要求完全自动化的测定,Passing-Bablok回归分析表明,不同离心方法之间的一致性差,可以接受。结论:完全自动化的解决方案是合适的,可以推荐用于频繁的止血测试。

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