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Developing a Printed Respiration Rate Sensor for E-textile Applications

机译:开发用于电子纺织应用的印刷呼吸速率传感器

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Real-time monitoring of the vital signs in everyday life enables early detection of various diseases and disorders that can cause a life-threatening incident. In this paper, a biocompatible strain sensor for real-time monitoring of the human respiration rate is proposed. The sensor consists of a stretchable fabric substrate impregnated with carbon black through drop-casting at ambient conditions. The proposed passive sensor provides a change in electrical resistance from 160 Ω down to 80 Ω against applied tensile strain 0 % to 16 %. Electrical resistance of the sensor decreases due to shrinkage of the conducting yarns and resets to the initial resistance value when released with the help of Polydimethylsiloxane (PDMS) encapsulation elastomeric properties and fabric’s stretchability. The resistance variation phenomenon is exploited for the respiration rate detection application. The sensor is characterized for electrical and mechanical properties. The proposed sensor can be a good candidate for the respiration rate monitoring in E-textile and wearable electronics.
机译:日常生活中生命体征的实时监测能够早期发现可能导致危及生命事件的各种疾病和疾病。本文提出了一种用于实时监测人类呼吸速率的生物相容性应变传感器。传感器由浸渍有炭黑的可拉伸织物基材,通过在环境条件下浇铸。所提出的被动传感器通过施加的拉伸应变为0%至16%,将电阻从160Ω降至80Ω的电阻变化。由于电导纱线的收缩,传感器的电阻减小,并且在借助于聚二甲基硅氧烷(PDMS)包封弹性体特性和织物的拉伸性时释放到初始电阻值。利用呼吸速率检测应用来利用电阻变化现象。该传感器的特征在于电气和机械性能。所提出的传感器可以是E-Textile和可穿戴电子设备中的呼吸速率监测的良好候选者。

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