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Study for the Integration of a Measuring System to an Automated Platform for Monitoring the Growth of Bacterial Cultures

机译:将测量系统集成到自动化平台以监测细菌培养物生长的研究

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As bacterial infections are still a risk for human health, the market offers different systems able to detect bacterial growth in biological samples. One of them is the WASPLab automated platform, commercialized by COPAN Italia S.p.A., which combines growth detection capabilities with high levels of automation and connectivity, in compliance with Industry 4.0 principles. In this paper, we describe a study carried out on a system, whose operation relies on impedance measurements, to evaluate the possibility of its integration to the WASPLab. This integration would provide a larger quantity of data about bacterial growth to the user and would optimize analysis process. By using this system, we observed the growth of S. aureus in Petri dishes, while they were directly inside one of the WASPLab incubators. System provided enough information to successfully detect bacterial growth with detection time equal to three, four and a half, and six hours when initial pathogen concentration was in the order of 4.5n.n10n8nCFU/ml, 4.5n.n10n7nCFU/ml, and 4.5n.n10n6nCFU/ml, respectively. Results highlight that the measuring system could work together with the WASPLab, enhancing its monitoring performances, connectivity, and flexibility. This contributes to the realization of an architecture compliant with the model of the Factory of the Future.
机译:由于细菌感染仍然是人类健康的风险,因此市场提供了能够检测生物样品中细菌生长的不同系统。其中之一是由COPAN Italia S.p.A.商业化的WASPLab自动化平台,该平台将增长检测功能与高度自动化和连接性相结合,并符合工业4.0原则。在本文中,我们描述了对系统进行的一项研究,该系统的运行依赖于阻抗测量,以评估将其集成到WASPLab的可能性。这种整合将为用户提供有关细菌生长的大量数据,并将优化分析过程。通过使用该系统,我们观察到培养皿中的金黄色葡萄球菌直接在WASPLab孵化器之一内时的生长。当初始病原体浓度约为4.5n n10n 8 nCFU / ml,4.5n n10n 7 nCFU / ml和4.5n n10n 6 nCFU / ml。结果表明,该测量系统可以与WASPLab一起使用,从而增强其监视性能,连接性和灵活性。这有助于实现符合未来工厂模型的架构。

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