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Supernormal vision and high-resolution retinal imaging through adaptive optics

机译:通过自适应光学系统实现超常视力和高分辨率视网膜成像

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摘要

Even when corrected with the best spectacles or contact lenses, normal human eyes still suffer from monochromatic aberrations that blur vision when the pupil is large. We have successfully corrected these aberrations using adaptive optics, providing normal eyes with supernormal optical quality. Contrast sensitivity to fine spatial patterns was increased when observers viewed stimuli through adaptive optics. The eye's aberrations also limit the resolution of images of the retina, a limit that has existed since the invention of the ophthalmoscope. We have constructed a fundus camera equipped with adaptive optics that provides unprecedented resolution, allowing the imaging of microscopic structures the size of single cells in the living human retina. #1997 Optical Society of American [S0740-3232(97)01111-3]
机译:即使用最好的眼镜或隐形眼镜矫正,正常的人眼仍然会遭受单色像差的困扰,当瞳孔很大时,它们会模糊视力。我们已经成功地使用自适应光学器件校正了这些像差,从而为普通眼睛提供了超普通的光学质量。当观察者通过自适应光学系统观察刺激时,对精细空间模式的对比度敏感度增加了。眼睛的像差还限制了视网膜图像的分辨率,这是自检眼镜发明以来就存在的限制。我们构建了配备自适应光学器件的眼底照相机,该照相机提供了前所未有的分辨率,可以对活人视网膜中单个细胞大小的微观结构进行成像。 #1997美国光学学会[S0740-3232(97)01111-3]

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