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Methods. PSF 1000 analyzer was used to measure retinal image quality for eye of 26 subjects (spherical ranged from –3.00 ~-6.00Ds, astigmatism ranged from –0.75~-3.00Dc) fitted with three forms of full correction in random order : unaided eye, with rigid gas permeable contact lenses and toric soft contact lenses. The modulation transfer function curve was observed, 12 points of the MTF curve ( equivalent 12 points of LogMar VA) was used for analysis. Results.

利用人眼点扩散函数分析系统(PSF-1000)检查和评估26例近视散光患者(年龄18~28岁,球镜–3.00DS~-6.00 DS,角膜散光-0.75DC ~-3.00DC)在裸眼、配戴散光软性角膜接触镜和透氧性硬性角膜接触镜三种全矫状态的光学成像质量,采用26眼屈光介质MTF曲线中的12个点(即分别等同于对数视力表4.0~5.1的12个点)进行比较和统计学分析,为了避免主观误差,三种矫正方式的先后顺序随机选择。

00Ds, astigmatism ranged from ?0.75~-3.00Dc fitted with three forms of full correction in random order : unaided eye, with rigid gas permeable contact lenses and toric soft contact lenses. The modulation transfer function curve was observed, 12 points of the MTF curve ( equivalent 12 points of LogMar VA) was used for analysis. Results.

3.00DS~-6.00 DS,角膜散光-0.75DC ~-3.00DC)在裸眼、配戴散光软性角膜接触镜和透氧性硬性角膜接触镜三种全矫状态的光学成像质量,采用26眼屈光介质MTF曲线中的12个点(即分别等同于对数视力表4.0~5.1的12个点)进行比较和统计学分析,为了避免主观误差,三种矫正方式的先后顺序随机选择。

To enlarge the measurement range of a potential vision meter and improve its measurement accuracy for patients with high error of refraction, the imaging characteristics of its optical system were investigated. The visual magnification equation of the system was derived. The influence of the focal length variation of the collimating lens and the imaging lens on the magnification was analyzed respectively.

针对潜在视功能检测仪临床使用中量程有限和对高度屈光不正患者检测结果有一定误差的现象,研究了其光学系统成像特性,建立了系统对视力板成像的视觉放大率公式,分析了准直透镜、成像透镜焦距变化对视觉放大率的影响。

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