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通过动态校正眼睛像差提高视网膜图像质量。

Improvement in retinal image quality with dynamic correction of the eye's aberrations.

作者信息

Hofer H, Chen L, Yoon G Y, Singer B, Yamauchi Y, Williams D R

出版信息

Opt Express. 2001 May 21;8(11):631-43. doi: 10.1364/oe.8.000631.

Abstract

We measured the improvement in retinal image quality provided by correcting the temporal variation in the eye's wave aberration with a closed-loop adaptive optics system. This system samples the eye's wave aberration at rates up to 30 Hz. Correction of the eye's aberrations can be completed in 0.25-0.5 seconds, resulting in residual rms wave-front errors as low as 0.1 microns for 6.8 mm pupils. Real-time wave-front measurements were used to determine how effectively the spatial and temporal components of the eye's wave aberration were corrected. The system provides dynamic correction of fluctuations in Zernike modes up to 5 th order with temporal frequency components up to 0.8 Hz. Temporal performance is in good agreement with predictions based on theory. Correction of the temporal variation in the eye's wave aberration increases the Strehl ratio of the point spread function nearly 3 times, and increases the contrast of images of cone photoreceptors by 33% compared with images taken with only static correction of the eye's higher order aberrations.

摘要

我们测量了通过闭环自适应光学系统校正眼睛波前像差的时间变化所带来的视网膜图像质量的改善。该系统以高达30Hz的速率对眼睛的波前像差进行采样。眼睛像差的校正可在0.25 - 0.5秒内完成,对于6.8mm的瞳孔,残余均方根波前误差低至0.1微米。实时波前测量用于确定眼睛波前像差的空间和时间分量被校正的有效程度。该系统可对高达5阶的泽尼克模式的波动进行动态校正,时间频率分量高达0.8Hz。时间性能与基于理论的预测高度吻合。校正眼睛波前像差的时间变化使点扩散函数的斯特列尔比提高了近3倍,与仅对眼睛高阶像差进行静态校正所拍摄的图像相比,锥状光感受器图像的对比度提高了33%。

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