用于无创连续酒精监测的柔性生物传感器

Qian Wang, Wenhao Lou, Sihong Chen, Jiaqiang Zhu, Mengyao Yuan, Chunhong Zhang, Tianyao Zhang, Guang Yao, Yuan Lin
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引用次数: 0

摘要

在本文中,我们介绍了一种廉价、轻便、高灵敏度和长寿命的被动可穿戴生物传感器,用于无线无创连续监测生物液体中的酒精浓度。该传感器由对称蛇形结构的可拉伸电感和圆形交叉电容组成,形成电阻-电容-电感(RCL)谐振电路。酒精浓度的变化改变了电容器的环境介电常数,从而改变了RCL电路的谐振频率,这可以通过初级线圈进行无线测量。高频结构模拟器(HFSS)模拟和实验验证了共振频率与醇/水混合物中醇浓度的关系。用猪皮模拟人体皮肤,验证了该装置具有良好的灵敏度和连续监测生物体液中酒精浓度的可行性。持续的无创酒精浓度监测可能为未来的柔性可穿戴设备和智能医疗开辟新的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible Biosensor for Non-invasive Continuous Alcohol Monitoring
In this paper, we introduce an inexpensive, lightweight, high-sensitivity, and long-life passive wearable biosensor for wireless non-invasive continuous monitoring of alcohol concentration in biofluids. The sensor consists of a stretchable inductor with a symmetric serpentine structure and a circular interdigitated capacitor to form an resistor-capacitorinductor (RCL) resonant circuit. The alcohol concentration change modifies the environmental dielectric constant of the capacitor and consequently the resonant frequency of the RCL circuit, which can be measured wirelessly with a primary coil. Both high-frequency structure simulator (HFSS) simulations and experiments verify the dependence of the resonant frequency on the alcohol concentration in the alcohol/water mixture. Using pigskin to simulate human skin validate the good sensitivity of the device and its feasibility in continuous monitoring of alcohol concentration in biofluids. Continuous non-invasive monitoring of alcohol concentration may open a new avenue for future flexible wearables and smart medicine.
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