色光噪声对年轻人和老年人亮度对比辨别的抑制差异。

IF 1.1 4区 医学 Q4 NEUROSCIENCES
Rosa Maria Guimarães Brito, Bruna Rafaela Silva Sousa, Letícia Miquilini, Paulo Roney Kilpp Goulart, Marcelo Fernandes Costa, Dora Fix Ventura, Maria Izabel Tentes Cortes, Givago Silva Souza
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引用次数: 0

摘要

老化会导致对比敏感度和色彩辨别能力受损,从而导致颜色和亮度信息之间的感知交互作用发生变化。我们的目的是研究彩色噪声对年轻人和老年人亮度对比阈值的影响。40名参与者平均分为青年组(29.6±6.3岁)和老年组(57.8±6.6岁)。他们在彩色噪声掩蔽物存在的情况下,在马赛克背景下使用马赛克刺激进行亮度对比辨别任务。采用四种彩色噪声掩蔽方案(protan, deutan, tritan和无噪声方案)。我们发现,两个年龄组的亮度对比阈值通过添加色度噪声而显著提高(P P P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differences in chromatic noise suppression of luminance contrast discrimination in young and elderly people.

Aging causes impairment of contrast sensitivity and chromatic discrimination, leading to changes in the perceptual interactions between color and luminance information. We aimed to investigate the influence of chromatic noise on luminance contrast thresholds in young and older adults. Forty participants were divided equally into Young (29.6 ± 6.3-year-old) and Elderly Groups (57.8 ± 6.6-year-old). They performed a luminance contrast discrimination task in the presence of chromatic noise maskers using a mosaic stimulus in a mosaic background. Four chromatic noise masking protocols were applied (protan, deutan, tritan, and no-noise protocols). We found that luminance contrast thresholds were significantly elevated by the addition of chromatic noise in both age groups (P < 0.05). In the Elderly group, but not the younger group, thresholds obtained in the tritan protocol were lower than those obtained from protan and deutan protocols (P < 0.05). For all protocols, the luminance contrast thresholds of elderly participants were higher than in young people (P < 0.01). Tritan chromatic noise was less effective in inhibiting luminance discrimination in elderly participants.

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来源期刊
Visual Neuroscience
Visual Neuroscience 医学-神经科学
CiteScore
2.20
自引率
5.30%
发文量
8
审稿时长
>12 weeks
期刊介绍: Visual Neuroscience is an international journal devoted to the publication of experimental and theoretical research on biological mechanisms of vision. A major goal of publication is to bring together in one journal a broad range of studies that reflect the diversity and originality of all aspects of neuroscience research relating to the visual system. Contributions may address molecular, cellular or systems-level processes in either vertebrate or invertebrate species. The journal publishes work based on a wide range of technical approaches, including molecular genetics, anatomy, physiology, psychophysics and imaging, and utilizing comparative, developmental, theoretical or computational approaches to understand the biology of vision and visuo-motor control. The journal also publishes research seeking to understand disorders of the visual system and strategies for restoring vision. Studies based exclusively on clinical, psychophysiological or behavioral data are welcomed, provided that they address questions concerning neural mechanisms of vision or provide insight into visual dysfunction.
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