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A new approach to understanding the impact of circadian disruption on human health

机译:一种了解昼夜节律对人类健康影响的新方法

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Background: Light and dark patterns are the major synchronizer of circadian rhythms to the 24-hour solar day. Disruption of circadian rhythms has been associated with a variety of maladies. Ecological studies of human exposures to light are virtually nonexistent, however, making it difficult to determine if, in fact, light-induced circadian disruption directly affects human health. Methods: A newly developed field measurement device recorded circadian light exposures and activity from day-shift and rotating-shift nurses. Circadian disruption defined in terms of behavioral entrainment was quantified for these two groups using phasor analyses of the circular cross-correlations between light exposure and activity. Circadian disruption also was determined for rats subjected to a consistent 12-hour light/12-hour dark pattern (12L:12D) and ones subjected to a "jet-lagged" schedule. Results: Day-shift nurses and rats exposed to the consistent light-dark pattern exhibited pronounced similarities in their circular cross-correlation functions and 24-hour phasor representations except for an approximate 12-hour phase difference between species. The phase difference reflects the diurnal versus nocturnal behavior of humans versus rodents. Phase differences within species likely reflect chronotype differences among individuals. Rotating-shift nurses and rats subjected to the "jet-lagged" schedule exhibited significant reductions in phasor magnitudes compared to the day-shift nurses and the 12L:12D rats. The reductions in the 24-hour phasor magnitudes indicate a loss of behavioral entrainment compared to the nurses and the rats with regular light-dark exposure patterns. Conclusion: This paper provides a quantitative foundation for systematically studying the impact of light-induced circadian disruption in humans and in animal models. Ecological light and activity data are needed to develop the essential insights into circadian entrainment/disruption actually experienced by modern people. These data can now be obtained and analyzed to reveal the interrelationship between actual light exposures and markers of circadian rhythm such as rest-activity patterns, core body temperature, and melatonin synthesis. Moreover, it should now be possible to bridge ecological studies of circadian disruption in humans to parametric studies of the relationships between circadian disruption and health outcomes using animal models.
机译:背景:明暗模式是昼夜节律与太阳日24小时的主要同步器。昼夜节律的破坏与各种疾病有关。然而,几乎没有人类对光的生态学研究,因此很难确定实际上由光引起的昼夜节律破坏是否直接影响人类健康。方法:一种新开发的现场测量设备记录了昼班和轮班护士的昼夜光照和活动。根据行为夹带定义的昼夜节律扰动是使用曝光和活动之间的圆形交叉相关性的相量分析对这两组进行量化的。还确定了大鼠的昼夜节律紊乱,该大鼠经历了一致的12小时光照/ 12小时黑暗模式(12L:12D)和经历了“时滞”计划的大鼠。结果:暴露于一致的明暗模式的日班护士和大鼠在圆形互相关函数和24小时相量表示方面表现出明显的相似性,除了物种之间的大约12小时相位差。相位差反映了人类与啮齿动物的昼夜行为与夜间行为。物种内的相差可能反映了个体之间的表型差异。与日班护士和12L:12D大鼠相比,接受“时差滞后”时间表的轮班护士和大鼠的相量明显降低。相较于具有规律的明暗暴露模式的护士和大鼠,24小时相量值的减少表明行为的丧失。结论:本文为系统研究光诱导的昼夜节律破坏对人类和动物模型的影响提供了定量基础。需要生态光和活动数据来发展对现代人实际经历的昼夜节律的夹杂/破坏的基本见解。现在可以获取和分析这些数据,以揭示实际曝光量与昼夜节律标志(例如,休息活动模式,核心体温和褪黑激素合成)之间的相互关系。而且,现在应该有可能将人类昼夜节律紊乱的生态研究与使用动物模型对昼夜节律紊乱与健康结果之间关系的参数研究联系起来。

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