首页> 外文会议>Conference on Ophthalmic Technologies Ⅻ Jan 19-20, 2002 San Jose, USA >Design and realization of a handheld-vibrometer system for non-contact in vivo detection of microvibrations of the human eye to determine the intraocular pressure (IOP)
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Design and realization of a handheld-vibrometer system for non-contact in vivo detection of microvibrations of the human eye to determine the intraocular pressure (IOP)

机译:用于非接触式体内人眼微振动检测以确定眼内压(IOP)的手持式振动计系统的设计和实现

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摘要

To allow measurements of the intraocular pressure (IOP) by glaucoma patients themselves (self-tonometry) a handheld-interferometer system for non-contact in vivo measurements of microvibrations of the human eye was realized. The measurement principle is based on the dependence of the resonance frequencies of the human eye on the IOP. To analyze this, the human eye is stimulated by ultrasonic waves and the induced microvibrations are measured with a vibrometer and processed by a DSP unit. Beside a stabilized diode laser and a low noise photodetector an exact three-dimensional positioning system had to be developed to guarantee reliable measurements. To investigate the corresponding requirements a camera-based system for the detection of human eye movements was developed and test series with several persons were made. Based on these results an adjustment unit was integrated in a miniaturized interferometer system: After a short self-adjusting procedure lateral to the setup by overlaying two targets of a highly sensitive optical system the correct measuring distance between the cornea and the vibrometer parallel to the optical axis is determined automatically by an astigmatic auto-focus system. With this handheld-vibrometer in vivo measurements with several test persons were made with very good results concerning the reliability and handling capability.
机译:为了允许青光眼患者自身测量眼压(IOP)(自眼压计),实现了用于非接触式人眼微振动的体内测量的手持式干涉仪系统。测量原理基于人眼的共振频率对IOP的依赖性。为了对此进行分析,人眼受到超声波的刺激,并通过振动计测量诱发的微振动,并由DSP单元进行处理。除了稳定的二极管激光器和低噪声光电探测器外,还必须开发精确的三维定位系统以确保可靠的测量。为了调查相应的要求,开发了基于相机的人眼运动检测系统,并进行了多人测试。根据这些结果,将调整单元集成到小型化的干涉仪系统中:经过短暂的自校准程序,通过重叠高度敏感的光学系统的两个目标,在角膜和振动计之间正确地测量了平行于光学系统的距离轴由像散自动对焦系统自动确定。使用该手持式振动计,在多个测试人员的体内进行了测量,结果在可靠性和处理能力方面取得了很好的结果。

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