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所选超敏锐度配置对视网膜图像退化的抵抗力。

The resistance of selected hyperacuity configurations to retinal image degradation.

作者信息

Williams R A, Enoch J M, Essock E A

出版信息

Invest Ophthalmol Vis Sci. 1984 Apr;25(4):389-99.

PMID:6706503
Abstract

Traditional visual acuity is based on resolution of stimulus features, whereas hyperacuity (ie, vernier acuity) is based on relative localization of stimulus features. Since resolution acuity is influenced severely by optical degradation, it is often not a suitable measure of the status of the retinal/neural visual system in conditions of optical degradation. In the present study, the authors investigate the effect of optical degradation on various relative localization tasks. Thresholds for three types of hyperacuity stimuli (line vernier, two-dot vernier, and line tilt) were measured under various degrees of image degradation, produced by viewing the targets through ground glass. The results indicate that when a hyperacuity stimulus is optically degraded, relative localization threshold increases only slightly for certain separations of the comparison features. In comparison with resolution acuity, hyperacuity threshold at the optimum feature separation is quite resistant to image degradation. This finding demonstrates a potential for the clinical application of hyperacuity as a test of visual function in the presence of cataracts and other media opacities.

摘要

传统视力基于刺激特征的分辨力,而超视力(即游标视力)则基于刺激特征的相对定位。由于分辨视力会受到光学退化的严重影响,因此在光学退化的情况下,它通常不是衡量视网膜/神经视觉系统状态的合适指标。在本研究中,作者研究了光学退化对各种相对定位任务的影响。通过毛玻璃观察目标,在不同程度的图像退化条件下,测量了三种超视力刺激(线游标、两点游标和线倾斜)的阈值。结果表明,当超视力刺激出现光学退化时,对于比较特征的某些间距,相对定位阈值仅略有增加。与分辨视力相比,在最佳特征间距下的超视力阈值对图像退化具有相当的抵抗力。这一发现表明,超视力在白内障和其他介质混浊情况下作为视觉功能测试具有临床应用潜力。

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