Institute of Microelectronics, Tsinghua University, Beijing 100084, P. R. China.
Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing 100084, P. R. China.
ACS Appl Mater Interfaces. 2020 Apr 22;12(16):18375-18384. doi: 10.1021/acsami.0c02991. Epub 2020 Apr 9.
Intraocular pressure (IOP) is the prime indicator for the diagnosis and treatment of glaucoma. IOP has circadian rhythm changes and is dependent on body gestures; therefore, a single measurement in the clinic can be misleading for diagnosis. Herein, few-layer graphene is utilized to develop non-invasive sensors with high transparency, sensitivity, linearity, and biocompatibility for 24 h continuous IOP monitoring. The graphene Wheatstone bridge consisting of two strain gauges and two compensating resistors is designed to improve the sensitivity and accuracy of IOP measurement. Testing results on a silicone eyeball indicate that the output voltage of the sensor is proportional to the IOP fluctuation. Under the various ranges and speeds of IOP fluctuation, the sensor exhibits excellent performance of dynamic cycles and step responses with an average sensitivity of 150 μV/mmHg. With the linear relationship, the average relative error between the calibrated IOP and the standard pressure is maintained at about 5%. More than 100 cycles and interval time measurements illustrate that the sensor possesses significant stability, durability, and reliability. Furthermore, a wireless system is designed for the sensor to realize IOP monitoring using a mobile phone. This sensor, with the average transparency of 85% and its ease of fabrication, as well as its portability for continuous IOP monitoring, brings new promise to the diagnosis and treatment of glaucoma.
眼压(IOP)是青光眼诊断和治疗的主要指标。IOP 存在昼夜节律变化,并且依赖于身体姿势;因此,临床上的单次测量可能会对诊断产生误导。在此,我们利用少层石墨烯开发出了具有高透明度、灵敏度、线性度和生物相容性的非侵入式传感器,可用于 24 小时连续眼压监测。该石墨烯惠斯通电桥由两个应变计和两个补偿电阻器组成,旨在提高眼压测量的灵敏度和准确性。在硅酮眼球上的测试结果表明,传感器的输出电压与眼压波动成正比。在各种眼压波动范围和速度下,传感器表现出出色的动态循环和阶跃响应性能,平均灵敏度为 150 μV/mmHg。由于具有线性关系,校准后的眼压与标准压力之间的平均相对误差保持在 5%左右。超过 100 次循环和间隔时间测量表明,该传感器具有显著的稳定性、耐用性和可靠性。此外,还为传感器设计了一个无线系统,以便使用手机实现眼压监测。该传感器具有 85%的平均透明度,易于制造,并且便于连续眼压监测,为青光眼的诊断和治疗带来了新的希望。