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在猫的快速眼动睡眠期间,自发和诱发的脑桥-膝状体-枕叶波的锁相作用与海马θ波的加速有关。

Phase-locking of spontaneous and elicited ponto-geniculo-occipital waves is associated with acceleration of hippocampal theta waves during rapid eye movement sleep in cats.

作者信息

Karashima Akihiro, Nakamura Kazuhiro, Sato Naoki, Nakao Mitsuyuki, Katayama Norihiro, Yamamoto Mitsuaki

机构信息

Laboratory of Neurophysiology and Bioinformatics, Graduate School of Information Sciences, Tohoku University, Aoba-yama 05, Aramaki Sendai 980-8579, Japan.

出版信息

Brain Res. 2002 Dec 27;958(2):347-58. doi: 10.1016/s0006-8993(02)03673-9.

Abstract

We investigated the temporal relationship between hippocampal theta waves and ponto-geniculo-occipital waves (PGO) during rapid eye movement sleep (REM sleep) in cats. In addition, we analyzed the relationship between hippocampal theta waves and PGO as elicited by tone stimulus (PGO(E)) in order to quantitively characterize the PGO wave generator mechanism. The results showed that a spontaneous PGO tended to be phase-locked to the theta wave, which was more clearly observed in the single PGO than in the cluster. However, cluster PGO(E) tended to be phase-locked as well as single PGO(E). It was therefore suggested that the generator of PGO is activated in relation to the hippocampal theta wave. An acceleration of the theta wave associated with PGO occurrence was found, and was more markedly observed than with the cluster PGO. Although the magnitude of it was less than in the spontaneous case, an acceleration around the PGO(E) was also observed. These results suggest that the generators of theta and PGO receive some common activations, especially when a cluster PGO is generated. The interaction between PGO and hippocampal theta waves is expected to be involved in the possible functions of REM sleep.

摘要

我们研究了猫快速眼动睡眠(REM睡眠)期间海马θ波与脑桥-膝状体-枕叶波(PGO)之间的时间关系。此外,我们分析了由音调刺激诱发的海马θ波与PGO(PGO(E))之间的关系,以便定量表征PGO波发生器机制。结果表明,自发PGO倾向于与θ波锁相,在单个PGO中比在丛集性PGO中更明显。然而,丛集性PGO(E)与单个PGO(E)一样倾向于锁相。因此表明PGO发生器与海马θ波相关被激活。发现与PGO出现相关的θ波加速,并且在丛集性PGO中比在单个PGO中更明显。尽管其幅度小于自发情况,但在PGO(E)周围也观察到加速。这些结果表明,θ波和PGO发生器接受一些共同的激活,特别是在产生丛集性PGO时。预计PGO与海马θ波之间的相互作用参与REM睡眠的可能功能。

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