Paolo Bellitti, Michele Bona, Michela Borghetti, E. Sardini, M. Serpelloni
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It could permit to obtain quantitative information about bacterial activity in real time directly inside the incubator, offering a more rapid and complete diagnosis response and avoiding the movement of the samples. In addition, the user can set measurement parameters according to his/her needs. This allows the system reaching a great level of flexibility. We tested our solution in two ways. First, we analyzed the behavior of the proposed solution comparing the output signals with the data obtained using an impedance analyzer (HP4194A) as reference. We obtained an average deviation equal to 0.768 Ω in magnitude and 0.059 ° in phase angle. Second, we carried out a 24-hour test to monitor the activity of Staphylococcus Aureus AT C 6538 in a climate chamber. We found that our system succeeded in observing bacterial growth, with an early detection time of 4 hours. 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引用次数: 5
摘要
诊断生物样本中是否存在细菌是一项需要尽早完成的任务,因为细菌感染仍然对人类健康构成严重威胁。在市场上,有商业系统对生物标本进行分析前测试。COPAN Italia S.p.A的WASPLab提供了一个例子,该实验室通过以完全自动化的方式每次拍摄和处理一个培养皿的图像,来监测含有样品的培养皿上的细菌生长。在本文中,我们提出了一种新的监测传感器系统,用于所有培养皿同时检测细菌生长,目的是将其直接集成到WASPLab中。它可以直接在培养箱内实时获得细菌活性的定量信息,提供更快速和完整的诊断响应,避免样品的移动。此外,用户可以根据自己的需要设置测量参数。这使得系统达到了很高的灵活性。我们用两种方式测试了我们的解决方案。首先,我们将输出信号与阻抗分析仪(HP4194A)作为参考获得的数据进行比较,分析了所提出的解决方案的行为。我们得到的平均偏差等于0.768 Ω的量级和0.059°的相位角。其次,我们进行了一个24小时的测试,以监测金黄色葡萄球菌AT C 6538在气候室的活性。我们发现我们的系统成功地观察到了细菌的生长,早期检测时间为4小时。研究正在进行中,以整合拟议的系统在WASPLab。
Flexible monitoring system for automated detection of bacterial growth in a commercial specimen processing platform
Diagnosing the presence of bacteria in a biological sample is a task to accomplish as early as possible, since bacterial infections still represent a serious threat to human health. In the market, there are commercial systems carrying out pre-analytical tests on biological specimens. An example is provided by the WASPLab, by COPAN Italia S.p.A., which monitors bacterial growth on Petri dishes that contain the samples, by taking and processing images of one dish at a time in a completely automated way. In this paper, we propose a newly monitoring sensor system for all the Petri dishes at the same time for the detection of bacterial growth with the aim of integrating it directly in the WASPLab. It could permit to obtain quantitative information about bacterial activity in real time directly inside the incubator, offering a more rapid and complete diagnosis response and avoiding the movement of the samples. In addition, the user can set measurement parameters according to his/her needs. This allows the system reaching a great level of flexibility. We tested our solution in two ways. First, we analyzed the behavior of the proposed solution comparing the output signals with the data obtained using an impedance analyzer (HP4194A) as reference. We obtained an average deviation equal to 0.768 Ω in magnitude and 0.059 ° in phase angle. Second, we carried out a 24-hour test to monitor the activity of Staphylococcus Aureus AT C 6538 in a climate chamber. We found that our system succeeded in observing bacterial growth, with an early detection time of 4 hours. Research is undergoing to integrate the proposed system in the WASPLab.