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迈向无线供电的镜片式眼压监测系统。

Toward a Wirelessly Powered On-Lens Intraocular Pressure Monitoring System.

作者信息

Chiou Jin-Chern, Hsu Shun-Hsi, Liao Yu-Te, Huang Yu-Chieh, Yeh Guan-Ting, Kuei Cheng-Kai, Dai Kai-Shiun

出版信息

IEEE J Biomed Health Inform. 2016 Sep;20(5):1216-24. doi: 10.1109/JBHI.2016.2594058. Epub 2016 Jul 26.

Abstract

This paper presents a wireless on-lens intraocular pressure monitoring system, comprising a capacitance-to-digital converter and a wirelessly powered radio-frequency identification (RFID)-compatible communication system, for sensor control and data communication. The capacitive sensor was embedded on a soft contact lens of 200 μm thickness using commercially available biocompatible lens material, to improve compliance and reduce user discomfort. The sensor chip was shown to achieve effective number of bits greater than 10 over a capacitance range up to 50 pF while consuming only 64-μW power. The on-lens capacitive sensor could detect dielectric variation caused by changes in water content from a distance of 2 cm by using incident power from an RFID reader at 20 dBm. The maximum detectable distance was 11 cm with 30-dBm incident RF power. The rise in eye tissue temperature under 30-dBm RF exposure over an interval of 1 s was simulated and found to be less than 0.01°C.

摘要

本文介绍了一种无线眼内压监测系统,该系统包括一个电容数字转换器和一个无线供电的射频识别(RFID)兼容通信系统,用于传感器控制和数据通信。使用市售的生物相容性镜片材料,将电容式传感器嵌入厚度为200μm的软性隐形眼镜中,以提高佩戴舒适度并减少用户不适感。结果表明,该传感器芯片在高达50 pF的电容范围内有效位数大于10,而功耗仅为64μW。通过使用来自20 dBm的RFID阅读器的入射功率,镜片上的电容式传感器可以在2 cm的距离处检测到由含水量变化引起的介电变化。在30 dBm的入射射频功率下,最大可检测距离为11 cm。模拟了在30 dBm射频暴露下1秒内眼组织温度的升高,发现其小于0.01°C。

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