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Process Evaluation of an Open Architecture Real-Time Molecular Laboratory Platform

机译:开放架构实时分子实验室平台的过程评估

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The needs of molecular diagnostic laboratories that perform both Food and Drug Administration-cleared as well as laboratory-developed tests are usually not met on a single analytical platform. Furthermore, little information is available about the direct impact of molecular automation on labor costs and efficiency in clinical laboratories. We performed a process impact analysis from time and motion studies of a novel molecular diagnostic robotic system designed to automate sample preparation, extraction, and analysis. All 27 preanalytical tasks were quantified for the amount of time spent preparing 24 specimens for analysis. These steps were completed in 899 s (14 min, 59 s) followed by 7887 s (131 min, 27 s) of instrument operation independent of operator control (walk-away time). Postanalytical results evaluation required 1 min per specimen. The instrument automatically extracted the nucleic acid from the specimen, added the eluted DNA to the amplification reagents, and performed the analysis. Only 12% of the total instrument operations required relatively unskilled human labor. Thus, the availability of automated molecular diagnostic instruments will facilitate the expansion of molecular testing in the clinical laboratory because they reduce operator costs with respect to time and complexity of the tasks they are asked to perform.
机译:通常无法在单个分析平台上满足执行食品和药物管理局批准以及实验室开发的测试的分子诊断实验室的需求。此外,关于分子自动化对人工成本和临床实验室效率的直接影响的信息很少。我们从新型分子诊断机器人系统的时间和运动研究中进行了过程影响分析,该系统旨在自动化样品制备,提取和分析。对所有27个分析前任务进行量化,以准备24个样本进行分析所花费的时间。这些步骤在899 s(14分钟,59 s)内完成,然后在7887 s(131 min,27 s)内独立于操作员控制(走动时间)完成仪器操作。分析后结果评估需要每个样本1分钟。仪器自动从样本中提取核酸,将洗脱的DNA添加到扩增试剂中,然后进行分析。仪器操作总量中只有12%需要相对不熟练的人工。因此,自动分子诊断仪器的实用性将促进临床实验室中分子检测的扩展,因为它们减少了操作人员在时间和要求执行任务的复杂性方面的成本。

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