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A new computer-based Farnsworth Munsell 100-hue test for evaluation of color vision

机译:一种新的基于计算机的Farnsworth Munsell 100色相测试,用于评估色觉

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摘要

To evaluate a computer-based Farnsworth-Munsell (FM) 100-hue test and compare it with a manual FM 100-hue test in normal and congenital color-deficient individuals. Fifty color defective subjects and 200 normal subjects with a best-corrected visual acuity ≥6/12 were compared using a standard manual FM 100-hue test and a computer-based FM 100-hue test under standard operating conditions as recommended by the manufacturer after initial trial testing. Parameters evaluated were total error scores (TES), type of defect and testing time. Pearson's correlation coefficient was used to determine the relationship between the test scores. Cohen's kappa was used to assess agreement of color defect classification between the two tests. A receiver operating characteristic curve was used to determine the optimal cut-off score for the computer-based FM 100-hue test. The mean time was 16 ± 1.5 (range 6-20) min for the manual FM 100-hue test and 7.4 ± 1.4 (range 5-13) min for the computer-based FM 100-hue test, thus reducing testing time to <50 % (p < 0.05). For grading color discrimination, Pearson's correlation coefficient for TES between the two tests was 0.91 (p < 0.001). For color defect classification, Cohen's agreement coefficient was 0.98 (p < 0.01). The computer-based FM 100-hue is an effective and rapid method for detecting, classifying and grading color vision anomalies.
机译:若要评估基于计算机的Farnsworth-Munsell(FM)100色相测试,并将其与手动和FM 100色相测试在正常和先天性色彩不足的个体中进行比较。在制造商推荐的标准操作条件下,使用标准的手动FM 100色相测试和基于计算机的FM 100色相测试,对50例颜色缺陷的受试者和200例最佳矫正视力≥6/ 12的正常受试者进行了比较。初步试用测试。评估的参数是总错误评分(TES),缺陷类型和测试时间。皮尔逊相关系数用于确定测试分数之间的关系。 Cohen的卡伯(Kappa)用于评估两次测试之间颜色缺陷分类的一致性。接收机的工作特性曲线用于确定基于计算机的FM 100色相测试的最佳截止分数。手动FM 100色相测试的平均时间为16±1.5分钟(范围6-20),基于计算机的FM 100色相测试的平均时间为7.4±1.4分钟(范围5-13),因此将测试时间缩短至< 50%(p <0.05)。为了对颜色歧视进行分级,两次测试之间TES的Pearson相关系数为0.91(p <0.001)。对于颜色缺陷分类,科恩的一致性系数为0.98(p <0.01)。基于计算机的FM 100色相是一种有效,快速的检测,分类和分级色觉异常的方法。

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