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Design and fabricate a contact lens sensor with a micro-inductor embedded for intraocular pressure monitoring

机译:设计和制造用于眼压监测的嵌入式微传感器隐形眼镜传感器

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This paper presents a new type of micro-inductor sensor for intraocular pressure (IOP) measurement on soft contact lens substructure. The sensor was designed and fabricated by using MEMS fabrication technologies. The contact lens is for wearing on a cornea such that a curvature of the contact lens corresponds substantially to that of the cornea, and is preferably made of Hydroxyethylmethacrylate (HEMA) by cast-molding method of soft contact lens for high oxygen permeability and comfortable long-duration wearing. In this paper, we discuss a contact lens with micro-inductor measurement principle followed by a brief description of our sensor design and fabrication. Our first prototype without wireless has been tested in lab-simulation bench. We obtain a simulation and measurement results have good linearity between micro-inductor radius variation and oscillation frequency. In future work will be to optimize the fabrication technology and the design to reach a better resolution, also a radio frequency integrated circuit (RFIC) and antenna will be designed preferably embedded in the contact lens so that inductance value transfers to frequency value via LC oscillator circuit and transmits intraocular pressure sensing signal by wireless telemetry system.
机译:本文介绍了一种新型的微电感器传感器,用于在软接触镜头结构上的眼压(IOP)测量。通过使用MEMS制造技术设计和制造传感器。隐形眼镜用于佩戴角膜,使得隐形眼镜的曲率基本上与角膜的曲率相对应,并且优选通过软接触式细孔的浇铸成型方法由浓缩透氧性和舒适的浓度浓缩甲基丙烯酸甲酯(HEMA)制成。 - 磨损。在本文中,我们讨论了带有微电感测量原理的隐形眼镜,然后简要说明了我们的传感器设计和制造。我们的第一个原型在实验室模拟台上已经过测试。我们获得模拟,测量结果在微电感器半径变化和振荡频率之间具有良好的线性性。在未来的工作中,将优化制造技术和设计达到更好的分辨率,还将设计射频集成电路(RFIC)和天线,优选地嵌入隐形眼镜中,使得电感值通过LC振荡器转移到频率值。电路通过无线遥测系统传输眼内压敏信号。

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