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Daylight and artificial light phase response curves for the circadian rhythm in locomotor activity of the field mouse Mus booduga

机译:昼夜节律对田鼠小白鼠运动能力的昼夜节律和人造光相位响应曲线

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摘要

The sensitivity of the circadian pacemaker of the field mouse Mus booduga to diffuse daylight pulses of 15 min duration and 1000 lux intensity was measured in a series of experiments and a phase response curve (PRC) constructed. The PRC evoked was of type-I with significant quantitative differences compared to the PRCs constructed for other light stimuli (fluorescent and incandescent light sources) of the same intensity and duration. Not only are the advance and delay peaks larger in the daylight PRC, but there is also significant qualitative and quantitative differences in the shape of the PRC. The area under the advance zone of the diffuse daylight PRC (A) was found to be significantly greater than the A of (i) the fluorescent light PRC and of (ii) the incandescent light PRC. The area under the delay zone of the diffuse daylight PRC (D) was also found to be significantly greater compared to D of (i) the fluorescent light PRC and of (ii) the incandescent light PRC. These differences in the shape of the PRCs can only be attributed to the variation in the spectral intensity distribution of the different components in the three light stimuli used since all other factors (e.g. sample size, free-running period, duration and intensity of light pulse etc.) were comparable in the three PRC experiments. We conclude that the circadian photoreceptor(s) of the field mouse M. booduga are sensitive to variations in the spectral composition of light stimuli.
机译:在一系列实验中,测量了田鼠Mus booduga的昼夜节律起搏器对15分钟持续时间和1000 lux强度的散射日光脉冲的敏感性,并构建了相位响应曲线(PRC)。与为相同强度和持续时间的其他光刺激(荧光和白炽光源)构建的PRC相比,诱发的PRC是I型,具有明显的定量差异。在白天中华人民共和国中,不仅提前和延迟高峰更大,而且中华人民共和国的形状在质量和数量上也存在显着差异。发现漫射日光PRC(A)的前进区域下方的面积显着大于(i)荧光PRC和(ii)白炽光PRC的A。还发现,与(i)荧光灯PRC和(ii)白炽灯PRC的D相比,漫射日光PRC(D)的延迟区下方的面积明显更大。 PRCs形状的这些差异只能归因于所使用的三种光刺激中不同成分的光谱强度分布的变化,因为所有其他因素(例如样本大小,自由运行时间,光脉冲的持续时间和强度)等)在三个PRC实验中具有可比性。我们得出结论,田鼠M.booduga的昼夜节律感光器对光刺激的光谱成分变化敏感。

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