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基于光学成像的屈光度检测方法。

Diopter detection method based on optical imaging.

作者信息

Ren Kaitong, Liu Yong, Xu Mingming, Xing Wangmeiyu, Ni Jingshu, Zhang Yuanzhi, Dong Meili, Zhang Yang, Wang Yikun, Huang Yao

出版信息

Appl Opt. 2024 Mar 20;63(9):2140-2147. doi: 10.1364/AO.509341.

Abstract

The peripheral retinal refractive state plays an important role in eye growth and development and is closely related to the development of myopia. Existing methods for measuring the peripheral retinal refractive state are cumbersome and can only detect in a limited range. To address the above shortcomings, this paper proposes a retinal refractive state detection method using optical refractive compensation imaging. First, a series of defocus images is captured using an optical system, and then the images are enhanced and filtered. Subsequently, the Sobel function is applied to calculate sharpness, and the asymmetric Gaussian (AG) model is employed for peak fitting, allowing for the determination of the fundus retina's overall refractive compensation value. We performed consistency analysis on the central and peripheral diopters with autorefractor KR-8900 (Topcon, Japan) and WAM-5500 (Grand Seiko, Japan), respectively. The intraclass correlation coefficients (ICCs) are all greater than 0.9, showing good consistency. This is a promising alternative to the current techniques for assessing the refraction of the peripheral retina.

摘要

周边视网膜屈光状态在眼睛生长发育中起重要作用,且与近视的发展密切相关。现有的测量周边视网膜屈光状态的方法繁琐,且只能在有限范围内进行检测。为解决上述缺点,本文提出一种利用光学屈光补偿成像的视网膜屈光状态检测方法。首先,使用光学系统采集一系列散焦图像,然后对图像进行增强和滤波。随后,应用Sobel函数计算清晰度,并采用非对称高斯(AG)模型进行峰值拟合,从而确定眼底视网膜的整体屈光补偿值。我们分别使用自动验光仪KR - 8900(日本拓普康)和WAM - 5500(日本精工)对中央和周边屈光度进行一致性分析。组内相关系数(ICC)均大于0.9,显示出良好的一致性。这是当前评估周边视网膜屈光技术的一种有前景的替代方法。

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