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Wearable Contact Lens Sensor for Non-Invasive Continuous Monitoring of Intraocular Pressure

机译:可穿戴隐形眼镜传感器用于非侵入性连续监测眼压

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摘要

Intraocular pressure (IOP) is an essential indicator of the diagnosis and treatment of glaucoma. IOP has an apparent physiological rhythm, and it often reaches its peak value at night. To avoid missing the peak value at night and sample the entire rhythm cycle, the continuous monitoring of IOP is urgently needed. A wearable contact lens IOP sensor based on a platinum (Pt) strain gauge is fabricated by the micro-electro-mechanical (MEMS) process. The structure and parameters of the strain gauge are optimized to improve the sensitivity and temperature stability. Tests on an eyeball model indicate that the IOP sensor has a high sensitivity of 289.5 μV/mmHg and excellent dynamic cycling performance at different speeds of IOP variation. The temperature drift coefficient of the sensor is 33.4 μV/°C. The non-invasive IOP sensor proposed in this report exhibits high sensitivity and satisfactory stability, promising a potential in continuous IOP monitoring.
机译:眼压(IOP)是青光眼诊断和治疗的必要指标。 IOP具有表观的生理节奏,通常在夜间达到其峰值。为避免夜间缺少峰值并样本整个节奏周期,迫切需要对IOP的连续监测。基于铂(PT)应变计的可穿戴隐形眼镜IOP传感器由微机电(MEMS)工艺制造。应变仪的结构和参数经过优化,以提高灵敏度和温度稳定性。在眼球模型上的测试表明,IOP传感器具有289.5μV/ mmHg的高灵敏度,并且在不同速度的IOP变化下具有优异的动态循环性能。传感器的温度漂移系数为33.4μV/°C。本报告中提出的非侵入性IOP传感器具有高灵敏度和令人满意的稳定性,承诺连续IOP监测潜力。

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