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首页> 外文期刊>American Journal of Physiology >Behavioral and neurochemical sources of variability of circadian period and phase: studies of circadian rhythms of npy-/- mice.
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Behavioral and neurochemical sources of variability of circadian period and phase: studies of circadian rhythms of npy-/- mice.

机译:昼夜节律周期和阶段变异的行为和神经化学来源:npy-/-小鼠的昼夜节律研究。

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The cycle length or period of the free-running rhythm is a key characteristic of circadian rhythms. In this study we verify prior reports that locomotor activity patterns and running wheel access can alter the circadian period, and we report that these treatments also increase variability of the circadian period between animals. We demonstrate that the loss of a neurochemical, neuropeptide Y (NPY), abolishes these influences and reduces the interindividual variability in clock period. These behavioral and environmental influences, from daily distribution of peak locomotor activity and from access to a running wheel, both act to push the mean circadian period to a value < 24 h. Magnitude of light-induced resetting is altered as well. When photoperiod was abruptly changed from a 18:6-h light-dark cycle (LD18:6) to LD6:18, mice deficient in NPY were slower to respond to the change in photoperiod by redistribution of their activity within the prolonged dark and eventually adopted a delayed phase angle of entrainment compared with controls. These results support the hypothesis that nonphotic influences on circadian period serve a useful function when animals must respond to abruptly changing photoperiods and point to the NPYergic pathway from the intergeniculate leaflet innervating the suprachiasmatic nucleus as a circuit mediating these effects.
机译:自由节奏的周期长度或周期是昼夜节律的关键特征。在这项研究中,我们验证了先前的报告,即运动活动模式和行走轮进入会改变昼夜节律周期,并且我们报告这些治疗方法也增加了动物之间昼夜节律周期的变异性。我们证明了神经化学,神经肽Y(NPY)的丧失,消除了这些影响,并减少了时钟周期内的个体差异。这些行为和环境影响,来自峰值运动活动的每日分布和进入车轮的影响,均将平均昼夜节律周期推到小于24小时的值。光引起的复位的幅度也会改变。当光周期从18:6-h的明暗周期(LD18:6)突然改变为LD6:18时,缺乏NPY的小鼠对光周期变化的反应较慢,原因是它们的活性在长时间的黑暗中重新分布,并最终与控制相比,采用了延迟的夹带相位角。这些结果支持以下假设:当动物必须对突然变化的光周期做出反应并指出来自跨生小叶的跨叶小核的NPYergic途径作为介导这些作用的电路时,对昼夜节律的非光化作用起着有用的作用。

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