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Human eye anisoplanatism: eye as a lamellar structure

机译:人眼异向性:眼睛为层状结构

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In this paper we consider anisoplanatism effect as a fundamental limitation on the size of high resolution area (isoplanatic patch) of retinal images obtained using fundus cameras equipped with adaptive optics. Isoplanatic patch size was estimated using experimental results for on-axis and off-axis eye aberrations measured by Shack-Hartmann technique. Isoplanatic patch size varied among examined subjects in the range from 1.5° to 2.5° which is in good agreement with results obtained using ray-tracing technique. We estimated isoplanatic patch size for Gullstrand eye model and found it to be close to the values obtained from experimental results for subjects with good vision. We also discuss the possibilities of Gullstrand eye model modifications for modeling anisoplanatism effect for each particular subject. We also estimated the efficiency of multibeacon correction method and found out that this method allows us to almost twice increase the area with high resolution.
机译:在本文中,我们将各向异性平面效应视为使用配备有自适应光学系统的眼底照相机获得的视网膜图像高分辨率区域(等平面斑块)尺寸的基本限制。使用Shack-Hartmann技术测量的轴上和轴外眼像差的实验结果估计等距斑块大小。等距斑片大小在受检对象之间变化,范围为1.5°至2.5°,这与使用射线跟踪技术获得的结果非常吻合。我们估计了Gullstrand眼模型的等平面斑块大小,发现它与具有良好视力的受试者的实验结果所获得的值接近。我们还讨论了Gullstrand眼模型修改对每个特定主题的各向异性影响建模的可能性。我们还估算了多信标校正方法的效率,发现该方法使我们几乎可以以高分辨率将面积增加两倍。

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