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用于连续眼压监测的基于光子晶体的智能隐形眼镜。

Photonic crystal-based smart contact lens for continuous intraocular pressure monitoring.

作者信息

Maeng Bohee, Chang Hyung-Kwan, Park Jungyul

机构信息

Department of Mechanical Engineering, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul 04107, Republic of Korea.

出版信息

Lab Chip. 2020 May 19;20(10):1740-1750. doi: 10.1039/c9lc01268k.

Abstract

Glaucoma is a very common disease after cataracts and is dangerous enough to cause irreversible blindness. However, often the main symptom of glaucoma is difficult to recognize because it may be absent or appear late, so the risk of blindness is greater. Intraocular pressure (IOP) is a well-known primary factor indicating glaucoma. In this study, we demonstrate a smart IOP sensor embedded in a contact lens that works through visual color changes without an external power source such as a battery or RF-based wireless power transfer. A microhydraulic amplification mechanism is adopted to enhance the range of color change from a photonic crystal (PC)-based flexible membrane whose lattice distance between nanostructures varies according to the morphology changes of an eyeball caused by IOP. The performance of the sensor is quantitatively demonstrated using an artificial silicone eye model for in vitro evaluation and a porcine eyeball for ex vivo verification. It has a limit of detection (LOD) of 3.2 and 5.12 mmHg, which was measured and evaluated using a spectrometer and a smartphone camera, respectively. The results prove that our sensor embedded in the contact lens can continuously monitor the IOP change using color change, and a smartphone camera can be used as a quantitative IOP measurement system in a noninvasive manner without an expensive optical spectrometer.

摘要

青光眼是仅次于白内障的一种非常常见的疾病,其危险性足以导致不可逆转的失明。然而,青光眼的主要症状往往难以识别,因为它可能不存在或出现较晚,因此失明风险更大。眼压(IOP)是一个众所周知的指示青光眼的主要因素。在本研究中,我们展示了一种嵌入隐形眼镜的智能眼压传感器,它通过视觉颜色变化工作,无需电池或基于射频的无线电力传输等外部电源。采用微液压放大机制来增强基于光子晶体(PC)的柔性膜的颜色变化范围,该膜的纳米结构之间的晶格距离会根据眼压引起的眼球形态变化而变化。使用人工硅胶眼模型进行体外评估,并使用猪眼球进行离体验证,对传感器的性能进行了定量演示。其检测限(LOD)分别为3.2和5.12 mmHg,分别使用光谱仪和智能手机摄像头进行测量和评估。结果证明,我们嵌入隐形眼镜的传感器可以利用颜色变化连续监测眼压变化,并且智能手机摄像头可以作为一种无创的定量眼压测量系统,无需昂贵的光学光谱仪。

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