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紧凑型便携式眼微震颤传感器:设计、开发与校准。

Compact portable ocular microtremor sensor: design, development and calibration.

作者信息

Ryle James P, Al-Kalbani Mohammed, Collins Niamh, Gopinathan Unnikrishnan, Boyle Gerard, Coakley Davis, Sheridan John T

机构信息

University College Dublin, School of Electronic, Electrical and Mechanical Engineering, Dublin 4, Republic of Ireland.

出版信息

J Biomed Opt. 2009 Jan-Feb;14(1):014021. doi: 10.1117/1.3083435.

Abstract

Ocular microtremor (OMT) is a physiological high-frequency (up to 150 Hz) low-amplitude (25-2500 nm peak-to-peak) involuntary motion of the human eye. Recent studies suggest a number of clinical applications for OMT that include monitoring the depth of anesthesia of a patient in surgery, prediction of outcome in coma, and diagnosis of brain stem death. Clinical OMT investigations to date have used mechanical piezoelectric probes or piezoelectric strain gauges that have many drawbacks which arise from the fact that the probe is in contact with the eye. We describe the design of a compact noncontact sensing device to measure OMT that addresses some of the above drawbacks. We evaluate the system performance using a calibrated piezoelectric vibrator that simulates OMT signals under conditions that can occur in practice, i.e., wet eye conditions. We also test the device at low light levels well within the eye safety range.

摘要

眼球微震颤(OMT)是人类眼睛的一种生理性高频(高达150赫兹)低振幅(峰峰值为25 - 2500纳米)非自主运动。最近的研究表明OMT有许多临床应用,包括监测手术患者的麻醉深度、预测昏迷结果以及诊断脑干死亡。迄今为止,临床OMT研究使用的是机械压电探头或压电应变仪,这些探头存在许多缺点,因为探头与眼睛接触。我们描述了一种用于测量OMT的紧凑型非接触传感设备的设计,该设计解决了上述一些缺点。我们使用校准过的压电振动器评估系统性能,该振动器在实际可能出现的条件下,即湿眼条件下模拟OMT信号。我们还在远低于眼睛安全范围的低光照水平下测试了该设备。

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