Mathematical Analysis of Light-sensitivity Related Challenges in Assessment of the Intrinsic Period of the Human Circadian Pacemaker.

IF 2.9 3区 生物学 Q2 BIOLOGY Journal of Biological Rhythms Pub Date : 2024-04-01 Epub Date: 2024-02-06 DOI:10.1177/07487304231215844
Imran M Usmani, Derk-Jan Dijk, Anne C Skeldon
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Abstract

Accurate assessment of the intrinsic period of the human circadian pacemaker is essential for a quantitative understanding of how our circadian rhythms are synchronized to exposure to natural and man-made light-dark (LD) cycles. The gold standard method for assessing intrinsic period in humans is forced desynchrony (FD) which assumes that the confounding effect of lights-on assessment of intrinsic period is removed by scheduling sleep-wake and associated dim LD cycles to periods outside the range of entrainment of the circadian pacemaker. However, the observation that the mean period of free-running blind people is longer than the mean period of sighted people assessed by FD (24.50 ± 0.17 h vs 24.15 ± 0.20 h, p <0.001) appears inconsistent with this assertion. Here, we present a mathematical analysis using a simple parametric model of the circadian pacemaker with a sinusoidal velocity response curve (VRC) describing the effect of light on the speed of the oscillator. The analysis shows that the shorter period in FD may be explained by exquisite sensitivity of the human circadian pacemaker to low light intensities and a VRC with a larger advance region than delay region. The main implication of this analysis, which generates new and testable predictions, is that current quantitative models for predicting how light exposure affects entrainment of the human circadian system may not accurately capture the effect of dim light. The mathematical analysis generates new predictions which can be tested in laboratory experiments. These findings have implications for managing healthy entrainment of human circadian clocks in societies with abundant access to light sources with powerful biological effects.

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评估人类昼夜节律起搏器内在周期时与光敏感性相关挑战的数学分析
准确评估人类昼夜节律起搏器的固有周期,对于定量了解我们的昼夜节律如何与自然和人为的光-暗(LD)周期同步至关重要。评估人类固有周期的金标准方法是强制非同步法(FD),该方法假定,通过将睡眠-觉醒和相关的昏暗 LD 周期安排在昼夜节律起搏器夹带范围之外的时段,可以消除开灯评估固有周期的干扰效应。然而,通过观察发现,自由奔跑盲人的平均周期要长于通过 FD 评估的明眼人的平均周期(24.50 ± 0.17 小时 vs 24.15 ± 0.20 小时,P 0.001),这似乎与上述说法不一致。在此,我们使用一个简单的昼夜节律起搏器参数模型进行了数学分析,该模型采用正弦速度响应曲线(VRC)来描述光对振荡器速度的影响。分析表明,人类昼夜节律起搏器对低光照强度非常敏感,而且 VRC 的提前区大于延迟区,因此 FD 的周期较短。这项分析产生了新的可检验的预测,其主要意义在于,目前用于预测光照如何影响人体昼夜节律系统的定量模型可能无法准确捕捉到昏暗光线的影响。数学分析得出的新预测可以在实验室实验中进行检验。这些发现对于在大量使用具有强大生物效应的光源的社会中管理人类昼夜节律钟的健康调节具有重要意义。
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来源期刊
CiteScore
6.10
自引率
8.60%
发文量
48
审稿时长
>12 weeks
期刊介绍: Journal of Biological Rhythms is the official journal of the Society for Research on Biological Rhythms and offers peer-reviewed original research in all aspects of biological rhythms, using genetic, biochemical, physiological, behavioral, epidemiological & modeling approaches, as well as clinical trials. Emphasis is on circadian and seasonal rhythms, but timely reviews and research on other periodicities are also considered. The journal is a member of the Committee on Publication Ethics (COPE).
期刊最新文献
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