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A Capacitive Touch Screen Sensor for Detection of Urinary Tract Infections in Portable Biomedical Devices

机译:用于便携式生物医学设备中尿路感染检测的电容式触摸屏传感器

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Incidence of urinary tract infections (UTIs) is the second highest among all infections; thus, there is a high demand for bacteriuria detection. Escherichia coli are the main cause of UTIs, with microscopy methods and urine culture being the detection standard of these bacteria. However, the urine sampling and analysis required for these methods can be both time-consuming and complex. This work proposes a capacitive touch screen sensor (CTSS) concept as feasible alternative for a portable UTI detection device. Finite element method (FEM) simulations were conducted with a CTSS model. An exponential response of the model to increasing amounts of E. coli and liquid samples was observed. A measurable capacitance change due to E. coli presence and a tangible difference in the response given to urine and water samples were also detected. Preliminary experimental studies were also conducted on a commercial CTSS using liquid solutions with increasing amounts of dissolved ions. The CTSS was capable of distinguishing different volumes of liquids, also giving an exponential response. Furthermore, the CTSS gave higher responses to solutions with a superior amount of ions. Urine samples gave the top response among tested liquids. Thus, the CTSS showed the capability to differentiate solutions by their ionic content.
机译:尿路感染(UTI)的发生率在所有感染中排名第二。因此,对细菌尿的检测有很高的要求。大肠杆菌是尿路感染的主要原因,显微镜检查法和尿培养是这些细菌的检测标准。但是,这些方法所需的尿液采样和分析既费时又复杂。这项工作提出了电容触摸屏传感器(CTSS)概念,作为便携式UTI检测设备的可行替代方案。用CTSS模型进行了有限元方法(FEM)模拟。观察到该模型对增加量的大肠杆菌和液体样品的指数响应。还检测到由于大肠杆菌的存在引起的可测量的电容变化以及对尿液和水样品的响应的明显差异。在商业CTSS上也进行了初步实验研究,使用的液体溶液中溶解离子的量不断增加。 CTSS能够区分不同体积的液体,并给出指数响应。此外,CTSS对离子含量较高的溶液的响应更高。尿液样品在被测液体中响应最高。因此,CTSS显示了通过离子含量区分溶液的能力。

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