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眼球谐振频率和眼声计测量中的眼窝效应。

Eye orbit effects on eyeball resonant frequencies and acoustic tonometer measurements.

机构信息

Department of Biomedical Engineering, National Taiwan University, No. 1, Sec. 4, Roosevelt Rd., Taipei, 10617, Taiwan, ROC.

Department of Mechanical Engineering, National Taiwan University, Taipei, Taiwan, ROC.

出版信息

Sci Rep. 2022 Mar 22;12(1):4883. doi: 10.1038/s41598-022-08874-x.

Abstract

The eye orbit has mechanical and acoustic characteristics that determine resonant frequencies and amplify acoustic signals in certain frequency ranges. These characteristics also interfere with the acoustic amplitudes and frequencies of eyeball when measured with an acoustic tonometer. A model in which a porcine eyeball was embedded in ultrasonic conductive gel in the orbit of a model skull was used to simulate an in vivo environment, and the acoustic responses of eyeballs were detected. The triggering source was a low-power acoustic speaker contacting the occipital bone, and the detector was a high-resolution microphone with a dish detecting the acoustic signals without contacting the cornea. Dozens of ex vivo porcine eyeballs were tested at various intraocular pressure levels to detect their resonant frequencies and acoustic amplitudes in their power spectra. We confirmed that the eyeballs' resonant frequencies were proportional to intraocular pressure, but interference from orbit effects decreased the amplitudes in these resonant frequency ranges. However, we observed that the frequency amplitudes of eyeballs were correlated with intraocular pressure in other frequency ranges. We investigated eye orbit effects and demonstrated how they interfere with the eyeball's resonant frequencies and frequency amplitudes. These results are useful for developing advanced acoustic tonometer.

摘要

眼眶具有机械和声学特性,这些特性决定了共振频率,并在特定频率范围内放大声学信号。这些特性还会干扰眼球的声学幅度和频率,这在使用眼声计进行测量时尤为明显。本研究使用模型猪眼球嵌入到模型头骨眼眶中的超声导电凝胶中,以模拟体内环境,并检测眼球的声学响应。触发源为接触枕骨的低功率声学扬声器,探测器为高分辨率麦克风,其凹面碟形检测头不接触角膜,以检测声学信号。我们对数十只离体猪眼球进行了各种眼压水平的测试,以检测其在功率谱中的共振频率和声学幅度。结果证实眼球的共振频率与眼压成正比,但眼眶的干扰会降低这些共振频率范围内的幅度。然而,我们观察到眼球的频率幅度与其他频率范围内的眼压相关。我们研究了眼窝的影响,并展示了它们如何干扰眼球的共振频率和频率幅度。这些结果有助于开发先进的眼声计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/294e/8941096/511d47369280/41598_2022_8874_Fig1_HTML.jpg

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