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首页> 外文期刊>Brain research bulletin >Low-frequency stimulation of bilateral anterior nucleus of thalamus inhibits amygdale-kindled seizures in rats.
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Low-frequency stimulation of bilateral anterior nucleus of thalamus inhibits amygdale-kindled seizures in rats.

机译:低频刺激丘脑双侧前核可抑制大鼠杏仁核样癫痫发作。

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Brain stimulation with low-frequency is emerging as an alternative treatment for refractory epilepsy. The anterior nucleus thalamus (ANT) is thought to be a key structure in the circuits of seizure generation and propagation. The present study aimed to investigate the effects of low frequency stimulation (LFS) targeting ANT on amygdala-kindled seizures in Sprague-Dawley rats. Electrodes were implanted into the right basolateral amygdala and the right or bilateral ANT of Sprague-Dawley rats. When fully kindled seizures were achieved by daily electrical stimulation of the amygdala, LFS (15 min train of 0.1 ms pulses at 1 Hz and 200-500 muA) was applied to the unilateral or bilateral ANT immediately before the kindling stimulation (pre-treatment). Our study showed that LFS of the bilateral ANT significantly decreased the incidence of generalized seizures (GS) and seizure stage, as well as shortened duration of afterdischarge and GS demonstrating an inhibition of the severity of seizures. Moreover, LFS elevated the afterdischarge threshold (ADT) and GS threshold indicating an inhibition of susceptibility to seizures. On the other hand, LFS of the unilateral ANT failed to show any significance in inhibiting seizures. Our study demonstrated that bilateral LFS in ANT could significantly inhibit amygdala-kindled seizures by preventing both afterdischarge generation and propagation. It provided further evidence for clinical use of LFS in ANT.
机译:低频脑刺激作为难治性癫痫的替代疗法正在兴起。丘脑前核(ANT)被认为是癫痫发作发生和传播过程中的关键结构。本研究旨在研究针对ANT的低频刺激(LFS)对Sprague-Dawley大鼠杏仁核样癫痫发作的影响。将电极植入到Sprague-Dawley大鼠的右基底外侧杏仁核和右或双侧ANT中。当每天通过电刺激杏仁核而完全发作时,立即在刺激刺激之前(预治疗)对单侧或双侧ANT施加LFS(在1 Hz和200-500μA时以0.1 ms脉冲的15分钟训练) 。我们的研究表明,双边ANT的LFS显着降低了全身性癫痫(GS)和癫痫发作阶段的发生率,并缩短了出院后的持续时间,GS抑制了癫痫发作的严重程度。此外,LFS提高了放电后阈值(ADT)和GS阈值,表明对癫痫发作的敏感性受到抑制。另一方面,单侧ANT的LFS对抑制癫痫发作没有任何意义。我们的研究表明,ANT中的双侧LFS可以通过阻止后放电的产生和传播来显着抑制杏仁核样的癫痫发作。它为LFS在ANT中的临床应用提供了进一步的证据。

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