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Spectral Sensitivity Modeling and Nighttime Scene Brightness Perception

机译:光谱灵敏度建模和夜间场景亮度感知

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Brightness perception under different light sources is an important visual response, because it is related to perceptions of safety. A growing number of studies have been conducted to assess perceptions of scene brightness under light sources differing in spectral content, including results consistent with a role of melanopsin-containing, intrinsically photosensitive retinal ganglion cells in scene brightness. Data from recent studies of scene brightness perception at light levels experienced under nighttime driving conditions are used to compare different models of brightness perception. The data support a role of increased short-wavelength sensitivity for scene brightness perception and a provisional spectral sensitivity model that takes into account the possible influence of melanopsin-containing, intrinsically photoreceptive retinal ganglion cells is suggested as a basis for further investigation. The implications of such a model on brightness perception under several light sources used in transportation lighting are described.
机译:不同光源下的亮度感知是重要的视觉响应,因为它与安全感知有关。已经进行了越来越多的研究来评估在光谱成分不同的光源下对场景亮度的感知,包括与含黑色素的固有光敏性视网膜神经节细胞在场景亮度中的作用一致的结果。来自在夜间驾驶条件下所经历的光水平下的场景亮度感知的最新研究数据用于比较亮度感知的不同模型。数据支持增加短波灵敏度以增强场景亮度感知的作用,并建议考虑到含黑素的内在感光视网膜神经节细胞的可能影响的临时光谱灵敏度模型作为进一步研究的基础。描述了这种模型对交通照明中使用的几种光源下的亮度感知的影响。

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