首页> 外文期刊>Journal of refractive surgery >Takagi Glare Tester CGT-1000 for contrast sensitivity and glare testing in normal individuals and cataract patients.
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Takagi Glare Tester CGT-1000 for contrast sensitivity and glare testing in normal individuals and cataract patients.

机译:Takagi眩光测试仪CGT-1000用于正常个体和白内障患者的对比敏感度和眩光测试。

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PURPOSE: To investigate the sensitivity and repeatability of the Takagi Contrast Glare Tester CGT-1000 in normal individuals and those with cataracts. METHODS: A prospective observational study was performed. The Takagi Contrast Glare Tester measures contrast sensitivity (CS) at 6 target sizes and 13 contrast levels (2.00 to 0.34 logCS). Testing follows a method of descending limits paradigm with a single reversal determining threshold. The CGT-1000 was administered with and without glare in 95 eyes of 61 cataract patients and 13 controls. The percentage floor (unable to see the highest contrast) and ceiling (able to see the lowest contrast) effects and correlations between CS and cataract grades were determined. The repeatability was evaluated using Bland-Altman limits of agreement and expressed as the coefficient of repeatability (COR). Factor analysis was used to test for redundancy within the 6 spatial frequencies. RESULTS: In normal individuals, a high rate of ceiling effect varying with target size was noted--for 6.3 degrees, 4.0 degrees, 2.5 degrees, 1.6 degrees, 1.0 degrees, 0.7 degrees, ceiling effects were 68%, 58%, 18%, 11%, 4%, 2%, respectively, for no glare, and 47%, 42%, 8%, 2%, 2%, 2%, respectively, with glare. In cataract patients, floor effects were noted--3%, 0%, 3%, 7%, 19%, 62%, respectively, for no glare, and 3%, 3%, 6%, 14%, 44%, 79%, respectively, with glare. Correlations with cataract grades ranged from 0.10 to 0.61, being best for nuclear cataract. Repeatabilities expressed as COR were +/- 0.11, +/- 0.14, +/- 0.28, +/- 0.38, +/- 0.38, +/- 0.47 logCS, respectively. All spatial frequencies loaded heavily on one factor, indicating no gain in information from testing multiple target sizes. CONCLUSIONS: Sensitivity to the presence of cataract was good, but ceiling effects in normal individuals and floor effects in cataract patients limit accuracy. Repeatability was poor, but could be improved by testing less spatial frequencies more rigorously.
机译:目的:探讨高木对比度眩光测试仪CGT-1000在正常个体和白内障患者中的敏感性和可重复性。方法:进行了一项前瞻性观察研究。 Takagi对比度眩光测试仪可在6个目标尺寸和13个对比度水平(2.00至0.34 logCS)下测量对比度灵敏度(CS)。测试遵循具有单个反转确定阈值的下降限制范式的方法。在61例白内障患者和13例对照的95眼中,使用CGT-1000进行有无眩光治疗。确定了百分比下限(看不到最高对比度)和上限(看不到最低对比度)效果以及CS和白内障等级之间的相关性。使用Bland-Altman一致性极限评估可重复性,并表示为可重复性系数(COR)。因子分析用于测试6个空间频率内的冗余度。结果:在正常个体中,注意到最高的天花板效应率随目标大小而变化-6.3度,4.0度,2.5度,1.6度,1.0度,0.7度的天花板效应分别为68%,58%,18% ,无眩光分别为11%,4%,2%,有眩光的分别为47%,42%,8%,2%,2%,2%。在白内障患者中,无眩光的地板效应分别为-3%,0%,3%,7%,19%,62%,以及3%,3%,6%,14%,44%, 79%的人有眩光。白内障等级的相关性介于0.10至0.61之间,最适合核性白内障。以COR表示的重复性分别为+/- 0.11,log 0.14,+ /-0.28,+ /-0.38,+ /-0.38,+ /-0.47 logCS。所有空间频率都集中在一个因素上,表明测试多个目标尺寸不会增加任何信息。结论:对白内障的敏感性良好,但正常人的上限效应和白内障患者的地面效应限制了准确性。重复性很差,但是可以通过更严格地测试较少的空间频率来改善。

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