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首页> 外文期刊>Journal of vision >Contrast sensitivity benefit of adaptive optics correction of ocular aberrations
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Contrast sensitivity benefit of adaptive optics correction of ocular aberrations

机译:自适应光学矫正眼像差的对比灵敏度优势

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摘要

While correcting the aberrations of the eye produces large increases in retinal image contrast, the corresponding improvement factors in the contrast sensitivity function have been little explored and results are controversial. We measured the CSF of 4 subjects with and without correcting monochromatic aberrations. Monochromatic CSF measurements were performed at four orientations (0, 45, 90, and 135 deg) and at six spatial frequencies (2a??30 c/deg). In two subjects, the CSF was also measured in polychromatic light. The MTF increased on average by 8 times and meridional changes in improvement were associated to individual meridional changes in the natural MTF. CSF increased on average by 1.35 times (only for the mid- and high spatial frequencies) and was lower (0.93 times) for polychromatic light. Under natural aberrations, the horizontal and vertical CSFs tended to be higher than the oblique CSFs, but the meridional differences in the CSF were partially reduced when the aberrations were corrected. The consistently lower benefit in the CSF than in the MTF of correcting aberrations suggests a significant role for the neural transfer function in the limit of contrast perception. Polychromatic aberrations play an additional role in degrading contrast, particularly in the absence of monochromatic high-order aberrations.
机译:在校正眼睛的像差时,视网膜图像对比度会大大提高,但在对比敏感度功能方面相应的改善因素却鲜有探索,结果尚存争议。我们测量了有和没有校正单色像差的4个对象的CSF。在四个方向(0、45、90和135度)和六个空间频率(2a-30 c / deg)下进行单色CSF测量。在两个受试者中,也用多色光测量了CSF。 MTF平均增加了8倍,子午线改善的变化与自然MTF的子午线变化有关。 CSF平均增加1.35倍(仅适用于中高空间频率),而多色光则较低(0.93倍)。在自然像差下,水平和垂直CSF倾向于高于倾斜CSF,但是当校正像差后,CSF的子午差异会部分减小。在CSF中,比在MTF中校正像差的收益始终较低,这表明神经传递功能在对比度感知极限方面起着重要作用。多色像差在降低对比度方面起着额外的作用,尤其是在没有单色高阶像差的情况下。

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