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眼表面膨胀的活体超声测量。

Ultrasonic in vivo measurement of ocular surface expansion.

机构信息

Institute of Physics, Wroclaw University of Technology, 50–370 Wroclaw, Poland.

出版信息

IEEE Trans Biomed Eng. 2011 Mar;58(3):674-80. doi: 10.1109/TBME.2010.2100819. Epub 2010 Dec 20.

Abstract

Our aim was to ascertain whether the ultrasonic measurement of longitudinal corneal apex displacements carried out in a proper headrest is a credible method of ocular pulse (OP) detection. To distinguish between longitudinal movements of the eye globe treated as a rigid body and ocular surface expansion caused by the variations of the eye-globe volume, two ultrasound distance sensors were applied to noninvasively measure displacements of cornea and sclera. The same sensors were used to examine the influence of the anterio-posterior movements of a fixed head on the registration of corneal apex pulsation. In both experiments, ECG signals were synchronically recorded. Time, spectral, and coherence analyses obtained for four healthy subjects showed that the ocular surface expansion due to pulsatile ocular blood flow (POBF) is the main component of longitudinal corneal displacement. Ocular surface pulsation is always affected by the head movement. However, there exist some unique properties of signals, which help to distinguish between head and eye movements. A rigid headrest and a bite bar are required to stabilize the head during OP measurement. Ultrasonic technique enables noninvasive and accurate in vivo measurement of corneal pulsation, which could be of interest for indirectly estimating intraocular pressure propagation and POBF component.

摘要

我们的目的是确定在适当的头托中进行的角膜顶点纵向位移的超声测量是否是检测眼脉冲(OP)的可靠方法。为了区分作为刚体的眼球的纵向运动和由于眼球体积变化引起的眼表面膨胀,我们使用两个超声距离传感器来非侵入式地测量角膜和巩膜的位移。相同的传感器用于检查固定头的前后运动对角膜顶点搏动的记录的影响。在这两个实验中,同步记录 ECG 信号。对四名健康受试者进行的时间,频谱和相干分析表明,由于脉动性眼血流(POBF)引起的眼表面扩张是角膜纵向位移的主要组成部分。眼表面搏动总是受头部运动的影响。但是,存在一些信号的独特特性,这有助于区分头部和眼部运动。刚性头托和咬杆用于在 OP 测量期间稳定头部。超声技术可用于非侵入性和准确地测量角膜搏动,这可能有助于间接估计眼内压传播和 POBF 分量。

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