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首页> 外文期刊>The Journal of Experimental Biology >Ultradian components in the locomotor activity rhythms of the genetically normal mouse, Mus musculus
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Ultradian components in the locomotor activity rhythms of the genetically normal mouse, Mus musculus

机译:基因正常小鼠小家鼠运动活动节律中的超动物成分

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Ultradian periodicities in physiological processes have been reported for a wide variety of organisms and may appear as bouts in locomotor activity. In some instances, this temporal organization can be related to some ethological strategy. In mice, however, ultradian rhythms have been reported largely in animals with circadian pacemakers disrupted either by genetic or surgical manipulation. Using analysis techniques capable of resolving periodicities in the ultradian range in the presence of strong diel periodicity, we found unequivocal evidence of ultradian rhythms in mice entrained to an light: dark cycle. We collected locomotor activity data of individuals from 11 genetically disparate strains of mice whose activity was recorded in 12 h:12 h L:D photoperiods for 3 days. Data were subjected to maximum entropy spectral analysis and autocorrelation, both before and after filtering to remove the 24-h periodicity. We found that every strain had a majority of individuals with strong ultradian rhythms ranging from similar to 3 to similar to 5 h. These periodicities were commonly visible in individual animals both in high-pass-filtered and in unfiltered data. Furthermore, when all raw data from a given strain were pooled to get a 24-h ensemble average across all animals and days, the rhythms continued to be discernable. We fitted Fourier series to these form estimates to model the frequency structure of each strain and found significant effects of strain and an interaction between period and strain indicating significant genetic variation for rhythmicity in the ultradian range. The techniques employed in this study should have wider use in a range of organisms and fields.
机译:已经报道了多种生物在生理过程中的超周期性,并且可能以运动活动形式出现。在某些情况下,这种时间上的组织可能与某种道德策略有关。然而,在小鼠中,据报道,在昼夜节律起搏器被基因或外科手术破坏的动物中,超律性节律。使用能够在强diel周期性存在的情况下解决超弧度范围内的周期性的分析技术,我们发现了明确的证据,证明小鼠在受到明暗循环的过程中存在超弧度节律。我们收集了来自11个基因完全不同的小鼠品系的个体的运动活性数据,这些小鼠的活性在12 h:12 h L:D光周期中记录了3天。在过滤去除24小时周期之前和之后,对数据进行最大熵谱分析和自相关。我们发现,每个菌株的大多数个体具有强烈的超节奏性,范围从相似的3小时到相似的5小时。这些周期通常在高通滤波和未滤波数据中的单个动物中可见。此外,当汇总来自给定品系的所有原始数据以在所有动物和一天中获得24小时整体平均值时,节奏仍可辨别。我们将傅里叶级数拟合到这些形式估计中,以对每个菌株的频率结构进行建模,发现菌株的显着影响以及周期与菌株之间的相互作用,表明其在超弧度范围内的节律性具有明显的遗传变异。这项研究中使用的技术应在一系列生物和领域中得到更广泛的应用。

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