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高 melanopsin 刺激的明视觉在中央凹呈现红色,在周边呈现绿色。

Daylights with high melanopsin stimulation appear reddish in fovea and greenish in periphery.

机构信息

Graduate School of Environment and Information Sciences, Yokohama National University, Yokohama, Japan.

Faculty of Environment and Information Sciences, Yokohama National University, Yokohama, Japan.

出版信息

PLoS One. 2023 Apr 26;18(4):e0285053. doi: 10.1371/journal.pone.0285053. eCollection 2023.

Abstract

Melanopsin reportedly contributes to brightness and color appearance in photopic vision in addition to cone photoreceptor cells. However, the relationship between the contribution of melanopsin to color appearance and retinal location is unclear. Herein, we generated metameric daylights (5000 K/6500 K/8000 K) with different melanopsin stimulations while keeping the size and colorimetric values intact and measured the color appearance of the stimuli in the fovea and periphery. The experiment included eight participants with normal color vision. We found that with high melanopsin stimulation, the color appearance of the metameric daylight shifts to reddish at the fovea and greenish in the periphery. These results are the first to show that the color appearance of visual stimuli with high melanopsin stimulation can be completely different in the foveal and peripheral vision even when the spectral power distribution of visual stimuli in both visions is the same. Both colorimetric values and melanopsin stimulation must be considered when designing spectral power distributions for comfortable lighting and safe digital signage in photopic vision.

摘要

据称,除了视锥细胞外,黑视蛋白还能影响明视觉中的亮度和颜色外观。然而,黑视蛋白对颜色外观的贡献与视网膜位置之间的关系尚不清楚。在此,我们在保持大小和色度值不变的情况下,生成了具有不同黑视蛋白刺激的同色异谱日光(5000 K/6500 K/8000 K),并测量了在中央凹和周边的刺激的颜色外观。该实验包括 8 名具有正常色觉的参与者。我们发现,随着黑视蛋白刺激的增加,同色异谱日光在中央凹处的颜色外观向红色偏移,而在周边则呈绿色。这些结果首次表明,即使在两种视觉中视觉刺激的光谱功率分布相同的情况下,高黑视蛋白刺激的视觉刺激的颜色外观在中央凹和周边视觉中也可以完全不同。在设计明视觉中的舒适照明和安全数字标牌的光谱功率分布时,必须同时考虑色度值和黑视蛋白刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0f2/10132674/aa6e7837bcdc/pone.0285053.g001.jpg

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