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FLEXIBLE E-TEXTILE SENSORS FOR REAL-TIME HEALTH MONITORING AT MICROWAVE FREQUENCIES

机译:灵活的电子纺织传感器,用于微波频率的实时健康监测

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This paper reports on testing of the performance of SmartLife~? e-textile material. In particular, the response of the integrated conductive pathways at microwave frequencies in the region of 9 kHz to 6 GHz is investigated for both biomedical sensing and signal transmission purposes. The experimental results confirm the viability of exciting the e-textile material at ISM microwave frequencies at mW powers for the purposes of wearable non-invasive sensing. Custom made flexible microwave sensors suitable for integration into smart e-textile fabric were tested in their ability to perform real-time body parameters monitoring, in particular the level and composition of perspiration. Gradual change in both the resonant frequency peak and amplitude was recorded in the 2-3 GHz frequency range with increased volume of fluid (50-350 μl) when in contact with a 5×8 mm~2 sensor. This fabric with built-in textile sensors could serve as a platform for "high-tech designer outfits" for an advanced healthcare approach where real-time data on patient condition is transmitted wirelessly for immediate processing and corrective action if necessary. The novel sensor reported here was recently patented under milestone UK patent application number GB 2500000.
机译:本文报告了有关SmartLife〜?性能的测试。电子纺织材料。特别地,出于生物医学感测和信号传输的目的,研究了集成导电路径在9 kHz至6 GHz范围内的微波频率下的响应。实验结果证实了以可穿戴式非侵入式传感为目的,以mW功率在ISM微波频率下激发电子纺织材料的可行性。测试了适合集成到智能电子纺织面料中的定制柔性微波传感器的性能,该功能可以实时监测人体参数,特别是汗水的水平和组成。当与5×8 mm〜2传感器接触时,随着流体体积的增加(50-350μl),在2-3 GHz频率范围内记录了共振频率峰值和幅度的逐渐变化。这种带有内置纺织品传感器的织物可以用作“高科技设计师服装”的平台,以采用先进的医疗保健方法,通过无线方式传输患者病情的实时数据,以便在必要时立即进行处理和采取纠正措施。本文报道的新型传感器最近获得了具有里程碑意义的英国专利申请号GB 2500000的专利。

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