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首页> 外文期刊>Journal of Micromechanics and Microengineering >A capacitor-based sensor and a contact lens sensing system for intraocular pressure monitoring
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A capacitor-based sensor and a contact lens sensing system for intraocular pressure monitoring

机译:用于眼压监测的基于电容器的传感器和隐形眼镜感应系统

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This study proposes a capacitor-based sensor on a soft contact lens for the measurement of intraocular pressure (IOP). The sensor was designed and fabricated via microelectromechanical system fabrication technologies. The soft contact lens is designed to be worn on a cornea such that the curvature of the contact lens corresponds substantially to that of the cornea. In addition, the contact lens was fabricated via a cast-molding method using poly-2-hydroxyethyl methacrylate to achieve a lens with high oxygen permeability, which can be worn comfortably for a long time. An IOP sensor prototype was implemented, which exhibited 1.2239 pF mmHg(-1) (13,171 ppm mmHg(-1)) sensitivity during measurements of an artificial anterior chamber at pressures between 18 and 30 mmHg. The results indicate that the developed capacitor-based IOP sensor exhibited high stability and reproducibility in a series of measurements performed under various pressures. The capacitance of the proposed IOP sensor can successfully be converted into a digital value via a capacitor-to-digital converter and be transmitted via a commercial wireless telemetry system in this study.
机译:这项研究提出了一种在软性隐形眼镜上的基于电容器的传感器,用于测量眼内压(IOP)。该传感器是通过微机电系统制造技术设计和制造的。该软隐形眼镜被设计为佩戴在角膜上,使得该隐形眼镜的曲率基本上对应于角膜的曲率。另外,使用聚甲基丙烯酸2-羟乙酯通过浇铸法制造隐形眼镜,以实现具有高氧渗透性的眼镜,其可以长时间佩戴舒适。实施了IOP传感器原型,该原型在18至30 mmHg的压力下测量人造前房时表现出1.2239 pF mmHg(-1)(13,171 ppm mmHg(-1))的灵敏度。结果表明,所开发的基于电容器的IOP传感器在各种压力下进行的一系列测量中均显示出高稳定性和可重复性。在这项研究中,建议的IOP传感器的电容可以通过电容数字转换器成功转换为数字值,并可以通过商用无线遥测系统进行传输。

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