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Subjective adaptive correction of the aberrations of the human eye

机译:人眼像差的主观自适应校正

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We designed and built an experimental setup for subjective (manually controlled) correction of up to 12 orthogonal terms (excluding tilts and defocus) of the aberration of the human eye. In our experiments, the subject was looking through an adaptive optical system at the USAF resolution chart. By using the arrow keys of the computer keyboard, the subject was able to control the amplitudes of up to 12 orthogonal aberration terms, introduced by a deformable mirror, optically conjugated to the pupil of the eye. Preliminary statistical analysis on a group of 12 participants with 6 correction attempts per participant, demonstrated satisfactory correlation of aberration coefficients obtained by the same person in different correction attempts. The majority of the participants were able to improve the visual acuity by subjective optimization of the figure of the deformable mirror.
机译:我们设计并建立了一个实验设置,用于对人眼像差的多达12个正交项(不包括倾斜和散焦)进行主观(手动控制)校正。在我们的实验中,受试者正在通过美国空军分辨率图上的自适应光学系统进行观察。通过使用计算机键盘的箭头键,受试者能够控制多达12个正交像差项的振幅,这些畸变项由可变形反射镜引入,并与眼睛的瞳孔光学共轭。对一组12位参与者的初步统计分析,每位参与者6次校正尝试,表明同一个人在不同的校正尝试中获得的像差系数具有令人满意的相关性。通过主观优化变形镜的形状,大多数参与者能够提高视力。

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