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Measurement of Bacterial Concentration Using a Portable Sensor System With a Combined Electrical-Optical Approach

机译:使用便携式传感器系统和组合光电方法测量细菌浓度

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Bacterial concentration, an important parameter for different applications, is usually measured by means of the plate count technique (PCT), a laboratory method that is reliable but also time consuming (24-72 h) and not easily implementable in automatic form. This paper investigates two alternative methods, based on electrical and optical measurements, suitable to realize mobile, low-cost and user friendly instruments. A comparative analysis for both methods is performed with enriching medium solutions and milk samples inoculated with four different bacterial species (Escherichia coli, Lactobacillus plantarum, Pseudomonas aeruginosa, and Staphylococcus aureus).The results show that both methods can detect the bacterial concentration more easily and in shorter time than PCT (3-14 h) and, in many cases, the optical approach provides a faster response than the electrical one (30-240 min) and higher accuracy (R-2 > 0.9). Furthermore, it is found that, in some cases, the combined use of optical and electrical measurements allows to determine the type of bacterial species present in the sample. Both such methods have been implemented in the form of a portable and automatic sensor system, suitable for in-situ measurements with no need of trained personnel.
机译:细菌浓度是不同应用的重要参数,通常通过平板计数技术(PCT)进行测量,该方法是一种可靠的实验室方法,但也很耗时(24-72 h),并且不易以自动形式实施。本文研究了基于电学和光学测量的两种替代方法,适用于实现移动,低成本和用户友好的仪器。两种方法的富集培养基溶液和牛奶样品分别接种了四种不同细菌种类(大肠杆菌,植物乳杆菌,铜绿假单胞菌和金黄色葡萄球菌)进行了比较分析,结果表明这两种方法都可以更轻松地检测细菌浓度,并且比PCT(3-14小时)更短的时间,并且在许多情况下,光学方法比电方法(30-240分钟)提供了更快的响应,并且准确性更高(R-2> 0.9)。此外,发现在某些情况下,光学和电学测量的组合使用可以确定样品中存在的细菌种类的类型。两种方法都以便携式和自动传感器系统的形式实现,适用于现场培训而无需经过培训的人员。

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