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首页> 外文期刊>Investigative ophthalmology & visual science >Impact of pupil transmission apodization on presbyopic through-focus visual performance with spherical aberration
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Impact of pupil transmission apodization on presbyopic through-focus visual performance with spherical aberration

机译:瞳孔透射变迹对老花眼全焦点视觉性能与球差的影响

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摘要

PURPOSE. To investigate the impact on through-focus retinal image quality and visual performance of apodizing the pupil's transmission function in combination with extended depth of focus presbyopic corrections, such as spherical aberration (SA). METHODS. Through-focus retinal image quality was determined theoretically for various magnitudes of pupil transmission apodization and Zernike primary SA (-0.5 to +0.5 μm) for a 4-mm pupil. The impact of pupil transmission apodization was also assessed psychophysically with a vision simulator equipped with a liquid crystal spatial light modulator for controlling pupil transmission. Through-focus visual acuity (VA) was measured with and without apodization in three cyclopleged subjects from distance to near with monochromatic light (550 nm) under two multifocal aberration conditions. Phase plates induced +0.2 and -0.2 lm of SA over a 4-mm artificial pupil. A baseline condition of zero SA was also included for comparison. RESULTS. The theoretical investigation showed that pupil transmission apodization significantly improved distance image quality in the presence of positive and negative SA. Retinal image quality at all target vergences for negative SA conditions was improved by apodization. Pupil transmission apodization improved through-focus VA by 0.1 to 0.2 logMAR at intermediate and near object distances for the zero and negative SA conditions. In the positive SA condition, apodization degraded VA by approximately 0.1 logMAR at intermediate object distances. CONCLUSIONS. Pupil transmission apodization had a significant impact on though-focus visual performance. Pupil transmission apodization affects through-focus retinal image quality by diminishing the relative contribution to the retinal image from the peripheral region of the wavefront aberration. Through-focus visual performance in presbyopic eyes with negative SA was improved due to pupil transmission apodization.
机译:目的。结合焦深远视矫正(例如球面像差(SA)),研究变迹瞳孔传输功能对变焦视网膜图像质量和视觉性能的影响。方法。理论上确定了瞳孔透射切趾的各种幅度的全焦点视网膜图像质量,以及4mm瞳孔的Zernike初级SA(-0.5至+0.5μm)。还使用配备有用于控制瞳孔透射的液晶空间光调制器的视觉模拟器从心理上评估了瞳孔透射变迹的影响。在两个多焦点像差条件下,通过单色光(550 nm)从远处到近处,测量了三只睫状体对象在有和没有变迹的情况下的全焦点视觉敏锐度(VA)。相板在4毫米人工瞳孔上诱导+0.2和-0.2 lm的SA。比较时还包括零SA的基线条件。结果。理论研究表明,在存在正负SA的情况下,瞳孔透射切趾显着改善了距离图像质量。切趾可改善SA阴性条件下所有目标散度的视网膜图像质量。在零和负SA条件下,在中间和近物距处,瞳孔透射切趾将通过焦点的VA改善了0.1至0.2 logMAR。在正SA条件下,切趾在中间物距下将VA降低约0.1 logMAR。结论。学生传播切趾对聚焦视觉性能有重大影响。瞳孔透射变迹通过减小波前像差外围区域对视网膜图像的相对贡献来影响全焦点视网膜图像质量。 SA阴性的老花眼的全焦点视觉性能由于瞳孔传播变迹而得到改善。

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