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Evaluation of the turnaround time of an integrated preanalytical and analytical automated modular system in a medium-sized laboratory.

机译:评估中型实验室中集成的预分析和分析自动化模块化系统的周转时间。

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OBJECTIVES:: Evaluation of an integrated Modular Preanalytics (MPA) and Modular Analytics SWA (MA) system (Roche Diagnostics) during continuous batch processing. DESIGN AND METHODS:: A total of 1000 blood specimen tubes was processed and tested in a batch-wise fashion, according to two different specimen input conditions (Study 1 and Study 2). The resulting turnaround time of the system was assessed. RESULTS:: Study 1 tubes were centrifuged in the MPA. The preanalytical time rose steadily from 14 to 28 min, and after sample 315, it showed minimal variation. The analytical time remained almost constant. In Study 2, tubes were centrifuged before being processed in the MPA. The preanalytical time increased from 4 to 19 min, and the analytical time increased similarly. The turnaround time in Study 1 was 132 min and in Study 2 was 108 min. CONCLUSION:: Centrifugation in the MPA slightly increased the turnaround time. Nevertheless, the labor associated with specimen processing was reduced and the efficiency of the laboratory was improved.
机译:目的::在连续批处理过程中对集成的模块化预分析(MPA)和模块化分析SWA(MA)系统(Roche Diagnostics)进行评估。设计与方法:根据两种不同的样本输入条件(研究1和研究2),以批处理的方式处理和测试了总共1000个血液样本管。评估了系统的最终周转时间。结果:研究1管在MPA中离心。分析前时间从14分钟稳定增加到28分钟,样品315之后的变化最小。分析时间几乎保持不变。在研究2中,将离心管离心后再在MPA中进行处理。分析前时间从4分钟增加到19分钟,分析时间也类似地增加。研究1中的周转时间为132分钟,研究2中的周转时间为108分钟。结论:MPA中的离心稍微增加了周转时间。然而,减少了与标本处理相关的劳动,并提高了实验室的效率。

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