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眼睛光学质量下降会导致老年人的色觉阈值变差。

Reduced eye optical quality contributes to worse chromatic thresholds in aging.

作者信息

Costa Marcelo Fernandes, Rego Livia Soledade, Henriques Leonardo Dutra, Martins Gaddi Carlo, Souza Givago Silva

机构信息

Department of Experimental Psychology, Institute of Psychology, University of São Paulo, São Paulo, São Paulo, Brazil.

Núcleo de Neurociências Aplicada, University of São Paulo, São Paulo, São Paulo, Brazil.

出版信息

Front Integr Neurosci. 2023 Mar 24;17:1129315. doi: 10.3389/fnint.2023.1129315. eCollection 2023.

Abstract

PURPOSE

Aging causes substantial changes in the intraocular lens, which leads to a reduction in chromatic perception. We aimed to measure the ocular light dispersion component in relation to the reduction in color vision by aging.

METHODS

Intraocular straylight was quantified psychophysically by C-Quant for light dispersion [Log(s)], reliability of the results (ESD), and psychometric sampling quality (Q). The Cambridge Color Test Trivector protocol measured the chromaticity thresholds for protan, deutan, and tritan color confusion axis in CIE 1976 u' v' units. We tested 224 subjects aged 24-68 years (106 men) with normal best-corrected visual acuity and without clinical evidence of cataracts.

RESULTS

A significant positive correlation was found between ocular dispersion of light and chromaticity thresholds for protan (r = 0.42; < 0.001), deutan (r = 0.49; < 0.001) and tritan (r = 0.51; < 0.0001) color confusion axes with a moderate effect size (η = 0.39). However, a weak contribution of the logarithm of the straylight in predicting the chromaticity threshold for protan (b = 0.15; = 0.025), deutan (b = 0.27; = 0.001) and tritan (b = 0.21; = 0.001) color confusion axes was verified in the regression coefficients. The other two measurement quality parameters estimated in the C-Quant were not correlated with chromaticity thresholds, suggesting that there are no problems with the quality of the measurement performed.

CONCLUSION

An increase in ocular light dispersion that occurs physiologically with aging negatively impacts the chromaticity threshold in a similar manner across all three color confusion axes. The weak regression effects suggest that neural rather than optical processes were more related to the reduction in chromaticity in aging.

摘要

目的

衰老会导致眼内晶状体发生显著变化,进而导致色觉下降。我们旨在测量与衰老引起的色觉下降相关的眼内光散射成分。

方法

通过C-Quant对眼内杂散光进行心理物理学定量,以测量光散射[Log(s)]、结果的可靠性(ESD)和心理测量采样质量(Q)。剑桥色觉测试三向量协议以CIE 1976 u' v'单位测量了红绿色盲、绿色盲和蓝黄色盲颜色混淆轴的色度阈值。我们测试了224名年龄在24 - 68岁之间(106名男性)的受试者,他们的最佳矫正视力正常且无白内障的临床证据。

结果

在所有三个颜色混淆轴上,眼内光散射与红绿色盲(r = 0.42;P < 0.001)、绿色盲(r = 0.49;P < 0.001)和蓝黄色盲(r = 0.51;P < 0.0001)的色度阈值之间均发现显著正相关,效应量中等(η = 0.39)。然而,在回归系数中证实,杂散光对数对红绿色盲(b = 0.15;P = 0.025)、绿色盲(b = 0.27;P = 0.001)和蓝黄色盲(b = 0.21;P = 0.001)颜色混淆轴色度阈值的预测贡献较弱。在C-Quant中估计的其他两个测量质量参数与色度阈值无关,这表明所进行的测量质量没有问题。

结论

随着年龄增长而生理发生的眼内光散射增加,会以类似方式对所有三个颜色混淆轴的色度阈值产生负面影响。较弱的回归效应表明,衰老过程中色度降低更多地与神经而非光学过程相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe8b/10079907/56249f6a1248/fnint-17-1129315-g001.jpg

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