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Visual performance with real-life tasks under Adaptive-Optics ocular aberration correction

机译:自适应光学眼像差校正下真实任务的视觉表现

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摘要

We measured the effect of the correction of the natural aberrations of the eye by means of adaptive optics on the subject's performance on three different visual tasks: subjective sharpness assessment of natural images, familiar face recognition, and facial expression recognition. Images were presented through a dedicated psychophysical channel and viewed through an electromagnetic deformable mirror. Experiments were performed on 17 normal subjects. Ocular aberrations (astigmatism and higher order aberrations) were reduced on average from 0.366 ± 0.154 to 0.101 ± 0.055 μm for a 5-mm pupil diameter. On average, subjects considered to be sharper 84 ± 14% of the images viewed under AO correction, and there was a significant correlation between the amount of corrected aberrations and the percentage of images that the subject considered sharper when observed under AO-corrected aberrations. In all eyes (except one), AO correction improved familiar face recognition, by a factor of ×1.13 ± 0.12 on average. However, AO correction did not improve systematically facial expression recognition. © ARVO.
机译:我们在三种不同的视觉任务上测量了通过自适应光学器件对受试者的自然畸变进行矫正的效果:自然图像的主观清晰度评估,熟悉的面部识别和面部表情识别。图像通过专用的心理物理通道呈现,并通过电磁可变形镜观看。在17名正常受试者上进行了实验。对于5毫米瞳孔直径,眼像差(散光和高阶像差)平均从0.366±0.154微米降低至0.101±0.055μm。平均而言,在AO校正下,被摄体被认为较清晰,图像的清晰度为84±14%,在AO校正像差下,被校正的像差量与被视为较清晰的图像百分比之间存在显着相关性。在所有眼睛(一只眼睛除外)中,AO校正平均改善了熟悉的面部识别能力,平均提高了×1.13±0.12倍。但是,AO校正不能系统地改善面部表情识别。 ©ARVO。

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