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WAG/Rij 和 GAERS 大鼠癫痫模型的脑电图差异。

Electroencephalographic differences between WAG/Rij and GAERS rat models of absence epilepsy.

机构信息

Istanbul Bilim University, Faculty of Medicine, Department of Physiology, Istanbul, Turkey.

出版信息

Epilepsy Res. 2010 May;89(2-3):185-93. doi: 10.1016/j.eplepsyres.2009.12.005. Epub 2010 Jan 25.

Abstract

The inbred Wistar Albino Glaxo Rats from Rijswijk (WAG/Rij) and the Genetic Absence Epilepsy Rats from Strasbourg (GAERS) are well-validated genetic models of absence epilepsy. Although they share similar characteristics including the spike-and-wave discharges (SWDs) in the EEG, some differences have been reported between both strains. This study aimed a systematic and detailed comparison of the SWD patterns of both strains in terms of the intensity, frequency and waveform morphology of the discharges by using exactly the same measurement and analysis techniques. The number, cumulative total duration and mean duration of SWDs were significantly higher in GAERS compared to WAG/Rij, while the discharge frequency was higher in the WAG/Rij. Furthermore, SWDs spectra and average SWD waveforms indicated that a single cycle of the SWD contains more energy in faster components such as spike and late positive transient in the GAERS. Additionally, WAG/Rij exhibited a significantly higher power between 8 and 14 Hz during the pre-SWD period. These clear phenomenological differences in the EEGs of both animal models suggest that these variables may represent basic phenotypic features of SWDs that should be sought after in the future studies that explore the genetic and molecular basis of absence epilepsy.

摘要

内交 Wistar 白化大鼠来自 Rijswijk(WAG/Rij)和遗传癫痫大鼠来自斯特拉斯堡(GAERS)是公认的失神癫痫的遗传模型。尽管它们具有相似的特征,包括脑电图中的棘波和慢波放电(SWD),但两种品系之间也存在一些差异。本研究旨在通过使用完全相同的测量和分析技术,从放电的强度、频率和波形形态等方面,对两种品系的 SWD 模式进行系统和详细的比较。与 WAG/Rij 相比,GAERS 的 SWD 数量、累积总持续时间和平均持续时间显著更高,而 WAG/Rij 的放电频率更高。此外,SWD 频谱和平均 SWD 波形表明,GAERS 中的 SWD 一个周期包含更多的能量,如棘波和晚期正性瞬变等更快的成分。此外,在 SWD 前期间,WAG/Rij 表现出显著更高的 8 到 14 Hz 之间的功率。这两种动物模型脑电图中的明显现象学差异表明,这些变量可能代表 SWD 的基本表型特征,未来研究探索失神癫痫的遗传和分子基础时应寻求这些特征。

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