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Integration of color and intensity increases time signal stability for the human circadian system when sunlight is obscured by clouds

机译:当阳光被云层遮挡时颜色和强度的集成增加了人体昼夜系统的时间信号稳定性

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摘要

The mammalian circadian system encodes both absolute levels of light intensity and color to phase-lock (entrain) its rhythm to the 24-h solar cycle. The evolutionary benefits of circadian color-coding over intensity-coding per se are yet far from understood. A detailed characterization of sunlight is crucial in understanding how and why circadian photoreception integrates color and intensity information. To this end, we continuously measured 100 days of sunlight spectra over the course of a year. Our analyses suggest that circadian color-coding may have evolved to cope with cloud-induced variation in light intensity. We proceed to show how an integration of intensity and spectral composition reduces day-to-day variability in the synchronizing signal (Zeitgeber). As a consequence, entrained phase angle of the circadian clock will be more stable, which will be beneficial for the organism. The presented characterization of sunlight dynamics may become important in designing lighting solutions aimed at minimizing the detrimental effects of light at night in modern societies.
机译:哺乳动物昼夜节律系统对光强度和颜色的绝对水平进行编码,以将其节奏锁相(夹带)到24小时的太阳周期。与强度编码本身相比,昼夜节律颜色编码的进化优势还远远没有被理解。对阳光的详细描述对于理解昼夜节律如何以及为什么将颜色和强度信息进行整合至关重要。为此,我们在一年中连续测量了100天的日光光谱。我们的分析表明,昼夜节律的颜色编码可能已经演变为应对云引起的光强度变化。我们将继续展示强度和频谱组成的积分如何减少同步信号(Zeitgeber)的日常变化。结果,生物钟的夹带相角将更稳定,这将对生物体有益。所呈现的阳光动力学特征可能在设计照明解决方案中变得很重要,该解决方案旨在最大程度地减少现代社会中夜晚的光的有害影响。

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