Jurasevska Kaiva, Ozolinsh Maris, Fomins Sergejs, Gutmane Ausma, Zutere Brigita, Pausus Anete, Karitans Varis
Department of Optometry and Vision Science, Faculty of Physics and Mathematics, University of Latvia Riga, Latvia.
Department of Optometry and Vision Science, Faculty of Physics and Mathematics, University of Latvia Riga, Latvia ; Institute of Solid State Physics, University of Latvia Riga, Latvia.
Front Psychol. 2014 Nov 27;5:1376. doi: 10.3389/fpsyg.2014.01376. eCollection 2014.
We produced a set of pseudoisochromatic plates for determining individual color-difference thresholds to assess test performance and test properties, and analyzed the results. We report a high test validity and classification ability for the deficiency type and severity level [comparable to that of the fourth edition of the Hardy-Rand-Rittler (HRR) test]. We discuss changes of the acceptable chromatic shifts from the protan and deutan confusion lines along the CIE xy diagram, and the high correlation of individual color-difference thresholds and the red-green discrimination index. Color vision was tested using an Oculus HMC anomaloscope, a Farnsworth D15, and an HRR test on 273 schoolchildren, and 57 other subjects with previously diagnosed red-green color-vision deficiency.
我们制作了一组用于确定个体色差阈值的假等色板,以评估测试性能和测试特性,并对结果进行了分析。我们报告了该测试对于缺陷类型和严重程度具有较高的有效性和分类能力[与哈迪-兰德-里特勒(HRR)测试第四版相当]。我们讨论了沿CIE xy色度图上的红色盲和绿色盲混淆线的可接受色差变化,以及个体色差阈值与红绿色辨别指数的高度相关性。使用奥culus HMC色盲检查仪、法恩斯沃思D15和HRR测试对273名学童以及57名其他先前被诊断为红绿色觉缺陷的受试者进行了色觉测试。