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Implementation of a microfluidic conductivity sensor — A potential sweat electrolyte sensing system for dehydration detection

机译:实现微流体电导率传感器—一种用于脱水检测的潜在汗液电解质传感系统

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As dehydration continues to plague performance athletes and soldiers, the need for improved dehydration detection is clear. We propose the use of a conductometric sensor as the foundation of a sweat-sensing patch to address this need. The conductometric sensor evaluates the conductivity of solutions with varying sodium concentrations. A lithographic process was used to fabricate a Polydimethylsiloxane (PDMS) microfluidic channel through which solution was flowed. The ionization of the solution that occurs when a voltage is applied results in an effective resistance across the channel. The measured resistance therefore, reflects the ionization of the solution and the corresponding sodium concentration. The potential application of the conductometric sensor in a sweat-sensing patch requires compatibility with a microcontroller and Bluetooth module. Thus, a circuit interface was created. A voltage divider was utilized to convert the output resistance of the sensor to a voltage that could be input into a microcontroller. An AC voltage signal with a frequency of 10 kHz was used as the source voltage of the voltage divider to minimize the faradaic impedance and the double layer effect of the ionized solution. Tests have revealed that the conductometric is capable of precisely measuring the conductivity of a sodium solution. The conductometric sensor will be applied to a sweat sensing patch through future work involving studying the link between sodium concentration in sweat and an individual's dehydration level, developing a sweat-collection method, and developing a method of consideration for the other ions contained in sweat.
机译:由于脱水继续困扰着表现出色的运动员和士兵,因此显然需要改进脱水检测。我们建议使用电导式传感器作为汗液感测贴片的基础,以解决这一需求。电导率传感器可评估钠浓度不同的溶液的电导率。使用光刻工艺来制造溶液流过的聚二甲基硅氧烷(PDMS)微流体通道。施加电压时发生的溶液电离会导致通道两端产生有效电阻。因此,测得的电阻反映了溶液的电离和相应的钠浓度。电导传感器在汗液感应贴片中的潜在应用需要与微控制器和蓝牙模块兼容。因此,创建了电路接口。利用分压器将传感器的输出电阻转换为可以输入微控制器的电压。使用频率为10 kHz的交流电压信号作为分压器的源电压,以最小化法拉第阻抗和电离溶液的双层效应。测试表明,电导率仪能够精确测量钠溶液的电导率。该电导式传感器将通过未来的工作应用于汗液感测贴片,该工作包括研究汗液中钠浓度与个人脱水水平之间的联系,开发汗液收集方法以及开发一种考虑汗液中其他离子的方法。

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