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细胞肿胀、癫痫发作与扩散性抑制:一项阻抗研究。

Cell swelling, seizures and spreading depression: an impedance study.

作者信息

Olsson T, Broberg M, Pope K J, Wallace A, Mackenzie L, Blomstrand F, Nilsson M, Willoughby J O

机构信息

Department of Signals and Systems, Chalmers University of Technology, SE-412 96, Göteborg, Sweden.

出版信息

Neuroscience. 2006 Jun 30;140(2):505-15. doi: 10.1016/j.neuroscience.2006.02.034. Epub 2006 Mar 31.

Abstract

The cellular processes that take place during the transition from pre-seizure state to seizure remain to be defined. In this study in awake, paralyzed rats, we used an electrical impedance measure of changes in extra-cellular intracranial volume to estimate changes in cell size in acute models of epilepsy. Animals were prepared with extradural electroencephalographic (EEG)/impedance electrodes and a venous catheter. On a subsequent day, animals were paralyzed, ventilated and treated with picrotoxin, kainic acid or fluorocitrate in doses that usually induce epileptiform discharges. We now report that increases in baseline impedance were induced by kainic acid and smaller increases by picrotoxin. We also demonstrated that epileptiform discharges were preceded by small, accelerated increases in impedance. Increases in baseline impedance were highly correlated with increases in power of non-ictal high frequency EEG activity. Seizures were accompanied by increases in impedance and all treatments induced transient, relatively large, increases in impedance often associated with unilateral reductions in low frequency EEG, likely periods of spreading depression. We conclude: cerebral cells swell in convulsant models of epilepsy, that there are pre-ictal accelerations in cell swelling, and that spreading depression-like events are frequently associated with seizures.

摘要

从发作前状态转变为发作期间发生的细胞过程仍有待确定。在这项针对清醒、瘫痪大鼠的研究中,我们使用细胞外颅内体积变化的电阻抗测量方法来估计癫痫急性模型中细胞大小的变化。给动物植入硬膜外脑电图(EEG)/阻抗电极和静脉导管。在随后的一天,使动物瘫痪、进行通气,并给予通常会诱发癫痫样放电剂量的印防己毒素、 kainic 酸或氟柠檬酸。我们现在报告,kainic 酸会引起基线阻抗增加,印防己毒素引起的增加较小。我们还证明,癫痫样放电之前会出现阻抗的小幅加速增加。基线阻抗的增加与非发作期高频 EEG 活动功率的增加高度相关。发作伴随着阻抗增加,所有治疗都会引起短暂的、相对较大幅度的阻抗增加,这通常与低频 EEG 的单侧降低有关,可能是扩散性抑制期。我们得出结论:在癫痫惊厥模型中脑细胞会肿胀,发作前细胞肿胀会加速,并且扩散性抑制样事件经常与发作相关。

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