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首页> 外文期刊>Clinical neurophysiology >Increase in 20-50 Hz (gamma frequencies) power spectrum and synchronization after chronic vagal nerve stimulation.
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Increase in 20-50 Hz (gamma frequencies) power spectrum and synchronization after chronic vagal nerve stimulation.

机译:慢性迷走神经刺激后,功率谱增加20-50 Hz(伽玛频率)并同步。

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摘要

OBJECTIVE: Though vagus nerve stimulation (VNS) is an important option in pharmaco-resistant epilepsy, its mechanism of action remains unclear. The observation that VNS desynchronised the EEG activity in animals suggested that this mechanism could be involved in VNS antiepileptic effects in humans. Indeed VNS decreases spiking bursts, whereas its effects on the EEG background remain uncertain. The objective of the present study is to investigate how VNS affects local and inter regional syncronization in different frequencies in pharmaco-resistant partial epilepsy. METHODS: Digital recordings acquired in 11 epileptic subjects 1 year and 1 week before VNS surgery were compared with that obtained 1 month and 1 year after VNS activation. Power spectrum and synchronization were then analyzed and compared with an epileptic group of 10 patients treated with AEDs only. RESULTS: VNS decreases the synchronization of theta frequencies (P < 0.01), whereas it increases gamma power spectrum and synchronization (< 0.001 and 0.01, respectively). CONCLUSIONS: The reduction of theta frequencies and the increase in power spectrum and synchronization of gamma bands can be related to VNS anticonvulsant mechanism. In addition, gamma modulation could also play a seizure-independent role in improving attentional performances. SIGNIFICANCE: These results suggest that some antiepileptic mechanisms affected by VNS can be modulated by or be the reflection of EEG changes.
机译:目的:尽管迷走神经刺激(VNS)是药物耐药性癫痫的重要选择,但其作用机理仍不清楚。 VNS使动物的EEG活动失步的观察结果表明,该机制可能与VNS对人类的抗癫痫作用有关。实际上,VNS减少了尖峰爆发,而其对EEG背景的影响仍不确定。本研究的目的是研究VNS如何在耐药性部分性癫痫中以不同频率影响局部和区域间同步化。方法:将在VNS手术前1年和1周获得的11例癫痫患者的数字记录与VNS激活后1个月和1年获得的数字记录进行比较。然后分析功率谱和同步,并与仅使用AED治疗的10例癫痫患者进行比较。结果:VNS降低了theta频率的同步性(P <0.01),而增加了γ功率谱和同步性(分别<0.001和0.01)。结论:θ频率的降低,功率谱的增加以及伽马波段的同步可能与VNS抗惊厥机制有关。此外,伽马调制还可以在改善注意力表现中起癫痫发作的独立作用。意义:这些结果表明,受VNS影响的某些抗癫痫机制可以通过脑电图的改变来调节或反映。

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