非人灵长类动物电惊厥和磁惊厥诱导癫痫发作的最佳频率

IF 4 Q2 NEUROSCIENCES
Angel V. Peterchev , Zhi-De Deng , Christopher Sikes-Keilp , Elyssa C. Feuer , Moacyr A. Rosa , Sarah H. Lisanby
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引用次数: 0

摘要

背景电痉挛疗法(ECT)和磁发作疗法(MST)是治疗耐药抑郁症的有效方法。确定导致最低癫痫阈值的刺激频率可以通过降低总体刺激强度来减少不良反应。方法选取4只雄性恒河猴,采用超短脉冲右单侧电痉挛和环形线圈-顶点MST,在固定频率5 ~ 240脉冲/秒(pps)范围内增加脉冲数,确定诱发癫痫发作的最佳频率。记录双侧脑电图表征癫痫表达。结果电刺激与MST的癫痫发作阈值对刺激频率的依赖性相似。较高的频率需要越来越短的脉冲序列来诱发癫痫发作,而中频范围与最少的脉冲(因此最少的电荷和能量)有关,最小值为16 pps,同样低的阈值为10和25 pps。在低频率和高频率下,在发作阈值处的脉冲数显著增加。最低的刺激频率(5和10pps)与脑电图测量的最大临界功率相关。结论:虽然本研究没有评估疗效和副作用,但结果强调了刺激频率对癫痫诱导的重要性,建议了有效的滴定计划,以尽量减少电刺激的暴露,并可以为研究评估对临床结果的影响提供信息。这些数据也可以支持干预措施的安全指南,如经颅磁刺激,必须避免诱发癫痫发作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Frequency for Seizure Induction With Electroconvulsive Therapy and Magnetic Seizure Therapy in Nonhuman Primates

Background

Electroconvulsive therapy (ECT) and magnetic seizure therapy (MST) are effective in the treatment of medication-resistant depression. Determining the stimulus frequency that results in the lowest seizure threshold could produce fewer adverse effects by reducing the overall stimulus intensity.

Methods

To determine the optimal frequency for seizure induction, 4 male rhesus macaques were titrated with an increasing number of pulses at fixed frequencies ranging from 5 to 240 pulses per second (pps) using ultrabrief pulse right-unilateral ECT and circular-coil-on-vertex MST. Bilateral electroencephalography was recorded to characterize the seizure expression.

Results

The seizure threshold dependence on stimulus frequency was similar for ECT and MST. While higher frequencies required progressively shorter trains to induce a seizure, the middle frequency range was associated with the fewest pulses (and therefore the least charge and energy), with a minimum at 16 pps and similarly low thresholds for 10 and 25 pps. The number of pulses at seizure threshold increased markedly at lower and higher frequencies. The lowest stimulus frequencies, 5 and 10 pps, were associated with the greatest ictal power measured by electroencephalography.

Conclusions

While neither efficacy nor side effects were assessed in this study, the results highlight the significance of stimulus frequency for seizure induction, suggest efficient titration schedules that minimize exposure to the electrical stimulus, and can inform studies to assess the impact on clinical outcomes. These data can also support safety guidelines for interventions such as transcranial magnetic stimulation that must avoid seizure induction.
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来源期刊
Biological psychiatry global open science
Biological psychiatry global open science Psychiatry and Mental Health
CiteScore
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