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在短于24小时的T周期下大鼠运动活动节律的解离

Dissociation of the rat motor activity rhythm under T cycles shorter than 24 hours.

作者信息

Campuzano A, Vilaplana J, Cambras T, Díez-Noguera A

机构信息

Unitat Fisiologia, Facultat de Farmàcia, Universitat de Barcelona, Spain.

出版信息

Physiol Behav. 1998 Jan;63(2):171-6. doi: 10.1016/s0031-9384(97)00416-2.

Abstract

Since the suprachiasmatic nuclei (SCN) were identified as the principal mammalian circadian clock, many studies describing their morphology and physiology have been carried out. Today, the multioscillatory nature of the SCN, which explains the dissociation of the circadian rhythms under some experimental conditions, is widely accepted. Here, we study the simultaneous presence of two circadian rhythms in the motor activity of the rat when exposed to symmetric light-dark (LD) cycles shorter than 24 h (T21, T21.5, T22, T22.5, T23, and T23.5). One rhythmic component was entrained by the external LD cycle whereas the other ran free with a period longer than 24 h. The results show that two circadian rhythms were present only when T was shorter than T23, whereas at T23.5 only one entrained component was manifested. The manifestation of the two circadian components depends quantitatively on the period of the external cycle--i.e., the strength of the entrained rhythm increases when the external T is closer to 24 h--whereas that of the nonentrained rhythm decreases. The dissociation of the motor activity rhythm and the gradual appearance of the two components are explained by considering the entrainment of a multioscillatory system as not taking place as a whole but rather in a partial manner, in such a way that some oscillators may entrain but not others. The effect of the entrained oscillators is added to the masking effect of the LD cycles.

摘要

自从视交叉上核(SCN)被确定为主要的哺乳动物昼夜节律时钟以来,已经开展了许多描述其形态和生理的研究。如今,SCN的多振荡性质已被广泛接受,这一性质解释了在某些实验条件下昼夜节律的解离现象。在此,我们研究了大鼠在暴露于短于24小时(T21、T21.5、T22、T22.5、T23和T23.5)的对称明暗(LD)周期时,其运动活动中同时存在的两种昼夜节律。一种节律成分受外部LD周期的调节,而另一种则以长于24小时的周期自由运行。结果表明,仅当T短于T23时才会出现两种昼夜节律,而在T23.5时仅表现出一种受调节的成分。两种昼夜节律成分的表现定量地取决于外部周期的时长——即,当外部T更接近24小时时,受调节节律的强度增加——而非受调节节律的强度则降低。运动活动节律的解离以及两种成分的逐渐出现可以通过考虑多振荡系统的调节并非整体发生而是部分发生来解释,即某些振荡器可能会被调节而其他振荡器则不会。受调节振荡器的作用会叠加到LD周期的掩盖作用上。

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