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先天性胼胝体发育不全小鼠睡眠脑电图的半球间连贯性

Interhemispheric coherence of the sleep electroencephalogram in mice with congenital callosal dysgenesis.

作者信息

Vyazovskiy V, Achermann P, Borbély A A, Tobler I

机构信息

Institute of Pharmacology and Toxicology, University of Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Neuroscience. 2004;124(2):481-8. doi: 10.1016/j.neuroscience.2003.12.018.

Abstract

Regional differences in the effect of sleep deprivation on the sleep electroencephalogram (EEG) may be related to interhemispheric synchronization. To investigate the role of the corpus callosum in interhemispheric EEG synchronization, coherence spectra were computed in mice with congenital callosal dysgenesis (B1) under baseline conditions and after 6-h sleep deprivation, and compared with the spectra of a control strain (C57BL/6). In B1 mice coherence was lower than in controls in all vigilance states. The level of coherence in each of the three totally acallosal mice was lower than in the mice with only partial callosal dysgenesis. The difference between B1 and control mice was present over the entire 0.5-25 Hz frequency range in non-rapid eye movement sleep (NREM sleep), and in all frequencies except for the high delta and low theta band (3-7 Hz) in rapid eye movement (REM) sleep and waking. In control mice, sleep deprivation induced a rise of coherence in the Delta band of NREM sleep in the first 2 h of recovery. This effect was absent in B1 mice with total callosal dysgenesis and attenuated in mice with partial callosal dysgenesis. In both strains the effect of sleep deprivation dissipated within 4 h. The results show that EEG synchronization between the hemispheres in sleep and waking is mediated to a large part by the corpus callosum. This applies also to the functional changes induced by sleep deprivation in NREM sleep. In contrast, interhemispheric synchronisation of theta oscillations in waking and REM sleep may be mediated by direct interhippocampal connections.

摘要

睡眠剥夺对睡眠脑电图(EEG)影响的区域差异可能与半球间同步有关。为了研究胼胝体在半球间EEG同步中的作用,计算了先天性胼胝体发育不全(B1)小鼠在基线条件下和6小时睡眠剥夺后的相干谱,并与对照品系(C57BL/6)的谱进行比较。在B1小鼠中,所有警觉状态下的相干性均低于对照组。三只完全无胼胝体小鼠中每只的相干水平均低于仅部分胼胝体发育不全的小鼠。B1小鼠和对照小鼠之间的差异在非快速眼动睡眠(NREM睡眠)的整个0.5-25Hz频率范围内均存在,在快速眼动(REM)睡眠和清醒状态下,除高δ波和低θ波频段(3-7Hz)外的所有频率中也存在。在对照小鼠中,睡眠剥夺在恢复的前2小时内导致NREM睡眠δ频段的相干性升高。这种效应在完全胼胝体发育不全的B1小鼠中不存在,在部分胼胝体发育不全的小鼠中减弱。在两个品系中,睡眠剥夺的效应在4小时内消失。结果表明,睡眠和清醒状态下半球间的EEG同步在很大程度上由胼胝体介导。这也适用于NREM睡眠中睡眠剥夺引起的功能变化。相比之下,清醒和REM睡眠中θ振荡的半球间同步可能由海马体间的直接连接介导。

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