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An overview of the non-visual effects of light: implications for new light sources and lighting systems design

机译:光的非视觉效果概述:对新光源和照明系统设计的影响

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Circadian rhythms are seen at every level of biology, from single cells to complex behaviors. The timing of every biological function in mammals is governed by the master clock in the suprachiasmatic nuclei (SCN), which has an intrinsic period of slightly longer than 24 hours. The light/dark pattern incident on the retina synchronizes the SCN to the 24-hour local time, coordinating and enabling diverse biological functions to occur at the correct time of day and night for optimum species survival. Without exposure to a regular, daily pattern of light and dark, circadian rhythms become disrupted. A wide range of modern maladies, from sleep disorders to cancer, has been linked to light-induced circadian disruption. Light has, however, been defined only in terms of the human visual system, not the circadian system. Light source and systems development should consider the needs of both the visual and non-visual systems. Discussed are the lighting characteristics impacting these two systems and the implications for designing light for various light and health applications.
机译:从单个细胞到复杂行为,从生物的各个层面都可以看到昼夜节律。哺乳动物中每项生物学功能的时机均由上眼交叉核(SCN)的主时钟控制,该主时钟的固有周期略长于24小时。入射在视网膜上的明暗模式将SCN同步到当地的24小时,以协调和启用多种生物功能,以在白天和晚上的正确时间进行,以实现最佳的物种生存。在没有规律的日常明暗变化的情况下,昼夜节律会被打乱。从睡眠障碍到癌症,各种各样的现代疾病都与光诱导的昼夜节律紊乱有关。然而,光仅是根据人类视觉系统而非昼夜节律系统来定义的。光源和系统开发应同时考虑视觉和非视觉系统的需求。讨论的是影响这两个系统的照明特性,以及为各种照明和健康应用设计照明的含义。

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