确定经颅交流电刺激对皮质运动兴奋性和运动表现的影响:四种频率的假控制比较。

IF 2.9 3区 医学 Q2 NEUROSCIENCES Neuroscience Pub Date : 2025-01-10 DOI:10.1016/j.neuroscience.2025.01.016
Mohamad Rostami, Annemarie Lee, Ashlyn K Frazer, Yonas Akalu, Ummatul Siddique, Alan J Pearce, Jamie Tallent, Dawson J Kidgell
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引用次数: 0

摘要

经颅交变电流刺激(tACS)可调节大脑振荡和皮质运动可塑性。我们研究了四种tACS频率(20赫兹、40赫兹、60赫兹和80赫兹)对运动皮层(M1)兴奋性和运动表现的影响。在随机交叉设计中,12 名成人接受了 20 分钟的 tACS 治疗,并以 Sham 作为对照。皮层运动和皮层内兴奋性在 tACS 后 60 分钟内进行测量。运动表现通过槽形钉板测试(GPT)和感觉运动评估进行评估。我们的研究结果表明,根据 MEP 振幅,皮质运动兴奋性的调节与频率有关。20 赫兹和 40 赫兹的 tACS 会降低 MEPs,而 60 赫兹和 80 赫兹的 tACS 则会提高 MEPs。与 Sham 相比,所有 tACS 频率的抑制(皮层沉默期,SP)都有所降低,其中 20 赫兹和 40 赫兹的抑制持续降低,60 赫兹的抑制在 0 后和 30 后产生影响,80 赫兹的抑制在 60 后产生影响。此外,60 赫兹的 tACS 会降低 0 后的皮层内抑制,而 20 赫兹和 60 赫兹会增加 0 后的皮层内促进,40 赫兹会增加 60 后的皮层内促进。不同频率的运动表现均未受到影响。回归分析表明,60 Hz tACS 后 60 分钟的 SP 缩短预示着反应时间的加快,而 80 Hz tACS 后 60 分钟的 MEP 振幅增大预示着手部灵活性的提高。总之,β 和 γ tACS 频率可调节 M1 兴奋性,并对 SP 产生一致的影响,这表明在涉及 SP 延长的病症(如中风和亨廷顿氏病)中具有潜在的应用价值。这些发现凸显了 60 赫兹 tACS 作为运动康复疗法潜在工具的重要性。
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Determining the effects of transcranial alternating current stimulation on corticomotor excitability and motor performance: A sham-controlled comparison of four frequencies.

Transcranial alternating current stimulation (tACS) modulates brain oscillations and corticomotor plasticity. We examined the effects of four tACS frequencies (20 Hz, 40 Hz, 60 Hz, and 80 Hz) on motor cortex (M1) excitability and motor performance. In a randomised crossover design, 12 adults received 20-minute tACS sessions, with Sham as control. Corticomotor and intracortical excitability was measured up to 60-minutes post-tACS. Motor performance was evaluated using the Grooved Pegboard Test (GPT) and sensorimotor assessments. Our findings demonstrated frequency-dependent modulation of corticomotor excitability based on MEP amplitude. 20 Hz and 40 Hz tACS reduced MEPs, while 60 Hz and 80 Hz increased MEPs. Inhibition (cortical silent period, SP) was reduced across all tACS frequencies compared to Sham, with 20 Hz and 40 Hz showing consistent reductions, 60 Hz showing effects at post-0 and post-30, and 80 Hz at post-60. Furthermore, 60 Hz tACS decreased intracortical inhibition at post-0, while intracortical facilitation increased with 20 Hz and 60 Hz at post-0, and 40 Hz at post-60. Motor performance remained unaffected across frequencies. Regression analyses revealed that shorter SP at 60 min post 60 Hz tACS predicted faster reaction times, while greater MEP amplitudes at 60 min following 80 Hz tACS predicted improved hand dexterity. Overall, beta and gamma tACS frequencies modulate M1 excitability, with consistent effects on SP, suggesting potential use in conditions involving SP elongation, such as stroke and Huntington's disease. These findings highlight 60 Hz tACS as a potential tool for motor rehabilitation therapies.

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来源期刊
Neuroscience
Neuroscience 医学-神经科学
CiteScore
6.20
自引率
0.00%
发文量
394
审稿时长
52 days
期刊介绍: Neuroscience publishes papers describing the results of original research on any aspect of the scientific study of the nervous system. Any paper, however short, will be considered for publication provided that it reports significant, new and carefully confirmed findings with full experimental details.
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