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First Evaluation of the WASP a New Automated Microbiology Plating Instrument

机译:WASP的首次评估一种新型的自动微生物电镀仪器

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摘要

Many laboratories are experiencing growing shortages of trained microbiology technologists and technicians. Consequently, there is considerable interest in new automation that could potentially lessen labor demands for specimen processing. In this study, we present the first published evaluation of a new microbiology instrument, the Walk Away Specimen Processor (WASP), manufactured by Copan, Inc., in which we evaluated cross-contamination, the accuracy of plating, and the quality of the results. The absence of cross-contamination was demonstrated by plating a total of 200 alternating inoculated and sterile specimen tubes. The ability of the WASP to subculture enrichment broths was evaluated with 106 Lim broth specimens, with the results being identical to those obtained by testing by routine methods. Plating of urine specimens with the WASP was compared to plating with the Dynacon Inoculab instrument. Three hundred specimens were plated in duplicate on both instruments with 1-μl loops, and 293 specimens were plated in duplicate on both instruments with 10-μl loops. The results of duplicate plating with the same instrument (replicate plating) and of the consensus agreement between the two instruments were compared. The replicate plating results were comparable for both instruments, while the WASP had more specimens with significant results than the Inoculab with the 1-μl loop only. Lastly, for the plating of 113 specimens in ESwab tubes, the manual method and WASP plating each yielded 90 potential pathogens. In summary, we report the first evaluation of a new microbiology specimen-plating instrument, the WASP, which offers opportunities for the automated plating of microbiology specimens to an extent that has not been possible to date.
机译:许多实验室正经历着训练有素的微生物技术人员和技术人员的日益短缺。因此,人们对新型自动化技术产生了极大的兴趣,这种自动化技术可能会减少对标本处理的劳动力需求。在这项研究中,我们展示了由Copan,Inc.制造的新型微生物仪器“走走标本处理器”(WASP)的首次发表评估,我们在其中评估了交叉污染,电镀的准确性以及产品的质量。结果。通过共接种200根交替接种的和无菌的样品管来证明没有交叉污染。用106个Lim肉汤样品评估了WASP传代培养肉汤的能力,结果与通过常规方法测试得到的结果相同。用WASP电镀尿液样本与用Dynacon Inoculab仪器电镀相比。将300个样品一式两份地铺板在两个仪器上,并分别用1-μl环进行平板接种,将293个样品一式两份地铺板在两个仪器上,并使用10μl环圈。比较了使用同一仪器进行两次重复电镀(重复电镀)的结果以及两种仪器之间达成共识的结果。两种仪器的重复镀板结果均相当,而WASP的标本比仅含1μl定量环的Inoculab样品多。最后,对于在ESwab管中进行113个标本的电镀,手动方法和WASP电镀均产生90种潜在病原体。总而言之,我们报告了对新型微生物标本电镀仪器WASP的首次评估,该仪器为迄今为止尚未实现的微生物标本自动电镀提供了机会。

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