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Low frequency stimulation decreases seizure frequency in a rat model of temporal lobe epilepsy

机译:低频刺激降低颞叶癫痫大鼠模型的癫痫发作频率

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Cortical stimulation for the treatment of epilepsy is currently being studied in both animals and humans; however, because the mechanisms are not well understood, optimal stimulation parameters and target have yet to be been determined. This paper describes the effects of low frequency stimulation (LFS) using a novel target, the hippocampal commissural fibers, in a rat model of human mesial temporal lobe epilepsy (MTLE). Epilepsy was induced in adult Sprague-Dawley rats (n=7) by one single electrical stimulation episode of the amygdala. After a three month period of epileptogenesis, baseline spontaneous seizure frequency was determined by continuous video and electrographic monitoring of the bilateral hippocampi for 2 weeks. Then, LFS (1 Hz) was applied continuously for 60 minutes ON and 15 minutes OFF, for two weeks, and the mean seizure frequency before, during and after treatment were compared. A statistically significant difference (p = 0.008) between the baseline and treatment states was observed. In 7 animals, 90% decrease in seizure frequency was observed during treatment and a 57% decrease in seizure frequency during the period following treatment when compared to the seizure frequency before stimulation. These findings support the hypothesis that the hippocampal commissures may be an effective target in low frequency stimulation for the suppression of spontaneous seizures in mesial temporal lobe epilepsy.
机译:目前正在动物和人类中研究皮质刺激治疗癫痫的方法。然而,由于尚未充分了解其机理,因此尚需确定最佳刺激参数和目标。本文描述了在人类中颞叶癫痫(MTLE)大鼠模型中使用新型靶标(海马连合纤维)进行低频刺激(LFS)的效果。通过杏仁核的单次电刺激发作,在成年Sprague-Dawley大鼠(n = 7)中诱发了癫痫病。在三个月的癫痫发生期后,通过连续2周对双侧海马进行视频和电子照相监控,确定基线自发发作的频率。然后,将LFS(1 Hz)连续应用60分钟ON和15分钟OFF,持续两周,并比较治疗前,治疗中和治疗后的平均癫痫发作频率。在基线状态和治疗状态之间观察到统计学上的显着差异(p = 0.008)。与刺激前的癫痫发作频率相比,在7只动物中,治疗期间的癫痫发作频率降低了90%,治疗后的癫痫发作频率降低了57%。这些发现支持这样的假说,即海马体连合可能是低频刺激中抑制颞中叶癫痫自发性发作的有效靶标。

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