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用于定量眼压监测的温度自补偿智能无线测量隐形眼镜

Temperature Self-Compensating Intelligent Wireless Measuring Contact Lens for Quantitative Intraocular Pressure Monitoring.

作者信息

Li Xu, Chen Wei, Li Hongyang, Shen Biwen, He Jiangang, Gao Huanlin, Bin Fengjiao, Li Hui, Xiao Dengbao

机构信息

Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, China.

Beijing Friendship Hospital, Capital Medical University, Beijing 100050, China.

出版信息

ACS Appl Mater Interfaces. 2024 May 1;16(17):22522-22531. doi: 10.1021/acsami.4c02289. Epub 2024 Apr 23.

Abstract

Flexible bioelectronic devices that can perform real-time and accurate intraocular pressure (IOP) monitoring in both clinical and home settings hold significant implications for the diagnosis and treatment of glaucoma, yet they face challenges due to the open physiological environment of the ocular. Herein, we develop an intelligent wireless measuring contact lens (WMCL) incorporating a dual inductor-capacitor-resistor (LCR) resonant system to achieve temperature self-compensation for quantitative IOP monitoring in different application environments. The WMCL utilizes a compact circuitry design, which enables the integration of low-frequency and high-frequency resonators within a single layer of a sensing circuit without causing visual impairment. Mechanically guided microscale 3D encapsulation strategy combined with flexible circuit printing techniques achieves the surface-adaptive fabrication of the WMCL. The specific design of frequency separation imparts distinct temperature response characteristics to the dual resonators, and the linear combination of the dual resonators can eliminate the impact of temperature variations on measurement accuracy. The WMCL demonstrates outstanding sensitivity and linearity in monitoring the IOP of porcine eyes in vitro while maintaining satisfactory measurement accuracy even with internal temperature variations exceeding 10 °C. Overcoming the impact of temperature variations on IOP monitoring from the system level, the WMCL showcases immense potential as the next generation of all-weather IOP monitoring devices.

摘要

能够在临床和家庭环境中进行实时、准确的眼压(IOP)监测的柔性生物电子设备,对青光眼的诊断和治疗具有重要意义,但由于眼部开放的生理环境,它们面临着挑战。在此,我们开发了一种智能无线测量隐形眼镜(WMCL),它集成了双电感 - 电容 - 电阻(LCR)谐振系统,以实现不同应用环境下定量眼压监测的温度自补偿。WMCL采用紧凑的电路设计,能够在不造成视觉障碍的情况下,将低频和高频谐振器集成在传感电路的单层中。机械引导的微尺度3D封装策略与柔性电路印刷技术相结合,实现了WMCL的表面自适应制造。频率分离的特殊设计赋予双谐振器不同的温度响应特性,双谐振器的线性组合可以消除温度变化对测量精度的影响。WMCL在体外监测猪眼眼压时表现出出色的灵敏度和线性度,即使内部温度变化超过10°C,也能保持令人满意的测量精度。从系统层面克服了温度变化对眼压监测的影响,WMCL作为下一代全天候眼压监测设备展现出巨大潜力。

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