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Changing the shape of circadian rhythms with light no brighter than moonlight.

机译:用不比月光更明亮的光线改变昼夜节律的形状。

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摘要

Day and night are often simulated for nocturnal rodents in the laboratory with 24 h lighting regimes alternating between moderate indoor light levels and complete darkness. Sometimes, complete darkness is replaced by dim illumination to aid human vision, with the assumption that the circadian clock of the rodent is blind to light of extremely low irradiance. However, completely dark nights are not functionally equivalent to dimly lit nights, even when nighttime illumination is below putative thresholds for the circadian visual system. Under a variety of analytical paradigms, dim nighttime illumination increases the plasticity of circadian entrainment in the nocturnal hamster. The present studies are designed to investigate the mechanisms through which dim light operates under entrained conditions.; In my first series of experiments, I demonstrate that canonical effects of dim light on circadian period and phase are insufficient to account for the potency of dim illumination under entrained conditions. Dim illumination is not a stronger zeitgeber than predicted based on previous research, nor does it directly potentiate stronger zeitgebers. Constant dim illumination increased the period of the daily activity rhythm and increased the duration of the active phase (alpha) by ∼3 h relative to that displayed under complete darkness. Specific effects of dim light on alpha suggest a novel action of dim light on the coupling between oscillators regulating circadian waveform.; To test for effects of dim light on circadian coupling, I employed a novel behavioral assay for studying oscillator interactions. 24 h light:dark:light:dark (LDLD) cycles induce bimodal rhythms, with two daily activity bouts programmed by "split" oscillator groups cycling in antiphase. Nearly 100% of Syrian hamsters split under LDLD with dimly lit nights, compared to only 33% of animals with completely dark nights. Dimly lit nights do not facilitate splitting through mere increases in nonphotic feedback. Instead, dim illumination alters circadian responses to photic and nonphotic stimuli, with specific effects present after entrainment to short night conditions simulating the unsplit state under LDLD. The photoperiod-dependent nature of these effects indicates that dim light alters circadian coupling between oscillators entrained to short night conditions. Interactions between oscillators mediate the fusion of split rhythms after release into constant conditions and the rejoining of split activity components under LDLD. Fusion of LDLD-induced split rhythms under free-running and entrained conditions is likewise modulated by dim illumination. Specific effects on the induction, maintenance, and fusion of LDLD-induced split rhythms are consistent with the hypothesis that dim illumination alters the nature of coupling within the mammalian pacemaker.
机译:在实验室中,通常白天和晚上对夜间啮齿类动物进行模拟,并在室内中等光照水平和完全黑暗之间进行24小时照明。有时,假定啮齿动物的生物钟对极低辐照度的光线是看不见的,则用昏暗的照明代替完全的黑暗以帮助人类视觉。但是,即使夜间照明低于昼夜节律视觉系统的假定阈值,完全漆黑的夜晚在功能上也不等同于昏暗的夜晚。在各种分析范例下,昏暗的夜间照明增加了夜间仓鼠昼夜节律的可塑性。本研究旨在研究暗光在夹带条件下的工作机理。在我的第一批实验中,我证明了暗光对昼夜节律周期和相位的规范影响不足以说明在一定条件下暗淡照明的效力。昏暗的照明不是比以前的研究预测的更强的时光,也不是直接增强更强的时光。相对于完全黑暗的环境,恒定的昏暗照明增加了日常活动节奏的周期,并使活动阶段(alpha)的持续时间增加了约3小时。暗光对α的特定影响表明,暗光对调节昼夜节律波形的振荡器之间的耦合具有新作用。为了测试暗光对昼夜节律耦合的影响,我采用了一种新颖的行为分析方法来研究振荡器的相互作用。 24小时光照:黑暗:光照:黑暗(LDLD)周期诱发双峰节律,由“分裂”振荡器组以反相循环编程的两个每日活动周期。在昏暗的夜晚,将近100%的叙利亚仓鼠在LDLD下分裂,而在完全黑暗的夜晚,只有33%的动物仓鼠。昏暗的夜晚无法通过仅增加非光反馈来促进分裂。相反,昏暗的照明会改变昼夜节律对光和非光刺激的反应,在夹带到模拟LDLD下未分裂状态的短夜条件后会产生特定的影响。这些效应的光周期依赖性质表明,昏暗的光线会改变夹带在短夜条件下的振荡器之间的昼夜节律耦合。振荡器之间的相互作用介导了释放到恒定状态后分裂节奏的融合,以及LDLD下分裂活动成分的重新结合。 LDLD诱导的分裂节奏在自由奔跑和夹带条件下的融合同样由昏暗照明调节。对LDLD诱导的分裂节律的诱导,维持和融合的特定影响与以下假设一致:暗淡的照明会改变哺乳动物起搏器内耦合的性质。

著录项

  • 作者

    Evans, Jennifer Anne.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Biology Neuroscience.; Psychology Experimental.; Psychology Physiological.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;心理学;生理心理学;
  • 关键词

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