Carkeet Andrew, Lister Lucas J
School of Optometry and Vision Science, Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.
Ophthalmic Physiol Opt. 2018 Mar;38(2):144-151. doi: 10.1111/opo.12434. Epub 2017 Dec 26.
To assess the effects of changing computer monitor pixel density on visual acuity measurements made using Sloan optotypes.
Acuity was measured on 10 participants aged 19 to 38 years (mean 27.9 ± 7.0) measured binocularly wearing their best spectacle correction. Stimuli were eight lines of five Sloan letter optotypes in logarithmic progression, ranging in size from -0.4 to 0.3 logMAR. Test distance was varied so that pixels on the monitor ranged in size from 0.125 mins of arc to 1.97 mins of arc. Two sampling approaches were used: (1) unfiltered sampling, with each pixel rendered either black or white; and (2) filtered sampling with pixel luminance averaged across a pixel aperture, giving grey-scale smoothing of letter edges.
A broken line fit was made to each data set, with acuity being stable at an asymptotic threshold VA for small pixels sizes, with thresholds increasing linearly when pixel sizes exceeded a critical pixel size P . For unfiltered stimuli, P averaged 1.1 mins of arc and for unfiltered stimuli averaged 0.69 mins of arc. For filtered stimuli, P was 1.79xVA , and for unfiltered P was 1.05xVA .
The results show that grey-scale filtering makes acuity measurement more resistant to the effects of pixellation. Based on a conservative interpretation of these findings, we make the recommendation that charts be constructed with, for filtered optotypes, a maximum pixel size of 0.6 x of the smallest MAR used and, for unfiltered optotypes, 0.35 x the smallest MAR used.
评估改变计算机显示器像素密度对使用斯隆视标进行视力测量的影响。
对10名年龄在19至38岁(平均27.9±7.0)的参与者进行双眼最佳矫正视力测量。刺激物是八行五种斯隆字母视标,呈对数递增,大小范围从-0.4到0.3 logMAR。测试距离可变,以使显示器上的像素大小范围从0.125分视角到1.97分视角。使用了两种采样方法:(1)未滤波采样,每个像素显示为黑色或白色;(2)滤波采样,像素亮度在像素孔径上平均,使字母边缘具有灰度平滑效果。
对每个数据集进行折线拟合,对于小像素尺寸,视力在渐近阈值视力(VA)处稳定,当像素尺寸超过临界像素尺寸P时,阈值呈线性增加。对于未滤波刺激,P平均为1.1分视角,对于滤波刺激平均为0.69分视角。对于滤波刺激,P为1.79×VA,对于未滤波刺激,P为1.05×VA。
结果表明,灰度滤波使视力测量对像素化影响更具抗性。基于对这些发现的保守解释,我们建议对于滤波视标,构建图表时使用的最大像素尺寸为所用最小MAR的0.6倍,对于未滤波视标,为所用最小MAR的0.35倍。