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首页> 外文期刊>Optometry and vision science: official publication of the American Academy of Optometry >Metrics of retinal image quality predict visual performance in eyes with 20/17 or better visual acuity.
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Metrics of retinal image quality predict visual performance in eyes with 20/17 or better visual acuity.

机译:视网膜图像质量指标可预测视力为20/17或更好的眼睛的视觉性能。

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PURPOSE: The purpose of this study is to determine the ability of single-value metrics of retinal image quality of the eye to predict visual performance as measured by high (HC) and low (LC) -contrast acuity at photopic (P) and mesopic (M) light levels in eyes with 20/17 and better visual acuity. METHODS: Forty-nine normal subjects in good health ranging in age from 21.8 to 62.6 with 20/17 or better monocular high-contrast logarithm of the minimum angle of resolution (logMAR) acuity served as subjects. Wavefront error through the 10th Zernike radial order over a 7-mm pupil was measured on each test eye using a custom-built Shack/Hartmann wavefront sensor. For each eye, 31 different single-value retinal image quality metrics were calculated. Visual acuity was measured using HC (95%) and LC (11%) logMAR at photopic (270 cd/m) and mesopic (0.75 cd/m) light levels. To determine the ability of each metric of retinal image quality to predict each type of logMAR acuity (P HC, P LC, M HC, and M LC), each acuity measure was regressed against each optical quality metric. RESULTS: The ability of the metrics of retinal image quality to predict logMAR acuity improved as luminance and/or contrast is lowered. The best retinal image quality metric (logPFSc) accounted for 2.6%, 15.1%, 27.6%, and 40.0% of the variance in P HC, P LC, M HC, and M LC logMAR acuity, respectively. CONCLUSIONS: In eyes with 20/17 and better P HC acuity, P HC logMAR acuity is insensitive to variations in retinal image quality compared with M LC logMAR acuity. Retinal image quality becomes increasingly predictive of logMAR acuity as contrast and/or luminance is decreased. Everyday life requires individuals to function over a large range of contrast and luminance levels. Clinically, the impact of retinal image quality as a function of luminance and contrast is readily measurable in a time-efficient manner with M LC logMAR acuity charts.
机译:目的:本研究的目的是确定眼睛的视网膜图像质量的单值量度预测视觉性能的能力,该能力通过高(HC)和低(LC)对比在明视(P)和中视的敏锐度来衡量(M)具有20/17和更好的视敏度的眼睛的光水平。方法:49名健康状况良好的正常受试者,年龄在21.8至62.6之间,最小分辨角(logMAR)视力为20/17或更好的单眼高对比度对数。使用定制的Shack / Hartmann波前传感器在每只测试眼上测量了在7毫米瞳孔上通过第十次Zernike径向阶的波前误差。对于每只眼睛,计算了31种不同的单值视网膜图像质量指标。使用HC(95%)和LC(11%)logMAR在明视(270 cd / m)和中视(0.75 cd / m)的光照水平下测量视敏度。为了确定每种视网膜图像质量度量预测每种logMAR视力(P HC,P LC,M HC和M LC)的能力,针对每种光学质量度量对每种视力度量进行回归。结果:随着亮度和/或对比度的降低,视网膜图像质量指标预测logMAR敏锐度的能力得到了提高。最佳的视网膜图像质量指标(logPFSc)分别占P HC,P LC,M HC和M LC logMAR视力方差的2.6%,15.1%,27.6%和40.0%。结论:与M LC logMAR视力相比,在P / HC视力为20/17或更高的眼中,P HC logMAR视力对视网膜图像质量的变化不敏感。随着对比度和/或亮度的降低,视网膜图像质量越来越能预测logMAR视力。日常生活需要个人在大范围的对比度和亮度水平下发挥作用。临床上,使用MLC logMAR视力表可以以省时的方式轻松测量视网膜图像质量随亮度和对比度变化的影响。

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