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Vagus Nerve Stimulation Applied with a Rapid Cycle Has More Profound Influence on Hippocampal Electrophysiology Than a Standard Cycle

机译:快速周期的迷走神经刺激对海马电生理的影响远超过标准周期

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摘要

Although vagus nerve stimulation (VNS) is widely used, therapeutic mechanisms and optimal stimulation parameters remain elusive. In the present study, we investigated the effect of VNS on hippocampal field activity and compared the efficiency of different VNS paradigms. Hippocampal electroencephalography (EEG) and perforant path dentate field-evoked potentials were acquired before and during VNS in freely moving rats, using 2 VNS duty cycles: a rapid cycle (7 s on, 18 s off) and standard cycle (30 s on, 300 s off) and various output currents. VNS modulated the evoked potentials, reduced total power of the hippocampal EEG, and slowed the theta rhythm. In the hippocampal EEG, theta (4–8 Hz) and high gamma (75–150 Hz) activity displayed strong phase amplitude coupling that was reduced by VNS. Rapid-cycle VNS had a greater effect than standard-cycle VNS on all outcome measures. Using rapid cycle VNS, a maximal effect on EEG parameters was found at 300 μA, beyond which effects saturated. The findings suggest that rapid-cycle VNS produces a more robust outcome than standard cycle VNS and support already existing preclinical evidence that relatively low output currents are sufficient to produce changes in brain physiology and thus likely also therapeutic efficacy.Electronic supplementary materialThe online version of this article (doi:10.1007/s13311-016-0432-8) contains supplementary material, which is available to authorized users.
机译:尽管迷走神经刺激(VNS)已被广泛使用,但是治疗机制和最佳刺激参数仍然难以捉摸。在本研究中,我们调查了VNS对海马场活动的影响,并比较了不同VNS范例的效率。在自由运动大鼠的VNS之前和期间,使用2个VNS占空比获得海马脑电图(EEG)和穿孔路径齿状场诱发的电位:2个VNS占空比:快速周期(7s开,18s关)和标准周期(30s开, 300关闭)和各种输出电流。 VNS调节了诱发电位,降低了海马脑电图的总功率,并减慢了theta节律。在海马EEG中,θ(4-8 Hz)和高伽马(75-150 Hz)活动表现出很强的相位振幅耦合,而VNS降低了相位振幅耦合。在所有结局指标中,快速循环VNS的效果均优于标准循环VNS。使用快速循环VNS,发现对EEG参数的最大影响为300μA,超过此值饱和。研究结果表明,快速循环VNS产生的结果比标准循环VNS更为稳健,并支持现有的临床前证据,即相对较低的输出电流足以产生脑生理学变化,从而可能还具有治疗功效。文章(doi:10.1007 / s13311-016-0432-8)包含补充材料,授权用户可以使用。

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