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Potent circadian effects of dim illumination at night in hamsters

机译:仓鼠夜间昏暗照明的强大昼夜节律效应

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Conventional wisdom holds that the circadian pacemaker of rodents and humans is minimally responsive to light of the intensity provided by dim moonlight and starlight. However, dim illumination (< 0.005 lux) provided during the daily dark periods markedly alters entrainment in hamsters. Under dimly lit scotophases, compared to completely dark ones phases, the upper range of entrainment is increased by similar to 4h, and re-entrainment is accelerated following transfer from long to short day lengths. Moreover, the incidence of bimodal entrainment to 24 h light: dark: light: dark cycles is increased fourfold. Notably, the nocturnal illumination inducing these pronounced effects is equivalent in photic energy to that of a 2 sec, 100 lux light pulse. These effects may be parsimoniously interpreted as an action of dim light on the phase relations between multiple oscillators comprising the circadian pacemaker. An action of dim light distinct from that underlying bright-light phase-resetting may promote more effective entrainment. Together, the present results refute the view that scotopic illumination is environmental "noise" and indicate that clock function is conspicuously altered by nighttime illumination like that experienced under dim moonlight and starlight. We interpret our results as evidence for a novel action of dim light on the coupling of multiple circadian oscillators.
机译:传统观点认为,啮齿动物和人类的昼夜节律起搏器对昏暗的月光和星光所提供的强度的光反应最小。但是,在每天的黑暗时段提供的昏暗照明(<0.005 lux)会显着改变仓鼠的夹带。与完全黑暗的暗相相比,在昏暗的暗相下,夹带的上限范围增加了约4h,并且在从长到短的白天转移后,加速了重夹带。此外,双峰夹带到24小时的发生率光照:黑暗:光照:黑暗周期增加了四倍。值得注意的是,诱发这些明显影响的夜间照明在光能上相当于2秒,100 lux的光脉冲。这些影响可以简化地解释为暗光对包括昼夜节律起搏器的多个振荡器之间的相位关系的作用。不同于基础亮相复位的暗光动作可能会促进更有效的夹带。总之,本发明的结果驳斥了暗视照明是环境“噪声”的观点,并表明时钟功能被夜间照明明显改变,如在昏暗的月光和星光下所经历的。我们将我们的结果解释为暗光对多个生物钟振荡器耦合产生新作用的证据。

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