Scalp acupuncture guidance for identifying the optimal site for transcranial electrical stimulation of the hand.

IF 1.7 4区 医学 Q4 NEUROSCIENCES Experimental Brain Research Pub Date : 2024-09-01 Epub Date: 2024-07-04 DOI:10.1007/s00221-024-06883-y
Hao Meng, Michael Houston, Gerard E Francisco, Yingchun Zhang, Sheng Li
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Abstract

Transcranial electrical stimulation (tES) often targets the EEG-guided C3/C4 area that may not accurately represent M1 for hand muscles. This study aimed to determine if the neuroanatomy-based scalp acupuncture-guided site (AC) was a more effective spot than the C3 site for neuromodulation. Fifteen healthy subjects received one 20-minute session of high-definition transcranial alternating current stimulation (HD-tACS) intervention (20 Hz at 2 mA) at the AC or C3 sites randomly with a 1-week washout period. Subjects performed ball-squeezing exercises with the dominant hand during the HD-tACS intervention. The AC site was indiscernible from the finger flexor hotspot detected by TMS. At the baseline, the MEP amplitude from finger flexors was greater with less variability at the AC site than at the C3 site. HD-tACS intervention at the AC site significantly increased the MEP amplitude. However, no significant changes were observed after tACS was applied to the C3 site. Our results provide evidence that HD-tACS at the AC site produces better neuromodulation effects on the flexor digitorum superficialis (FDS) muscle compared to the C3 site. The AC localization approach can be used for future tES studies.

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用头皮针指导确定手部经颅电刺激的最佳部位。
经颅电刺激(tES)通常以脑电图引导的 C3/C4 区域为目标,而该区域可能无法准确代表手部肌肉的 M1。本研究旨在确定基于神经解剖学的头皮针灸引导点(AC)是否比 C3 点对神经调节更有效。15 名健康受试者随机在 AC 或 C3 位置接受了一次 20 分钟的高清晰度经颅交变电流刺激(HD-tACS)干预(20 Hz,2 mA),并有 1 周的冲洗期。在 HD-tACS 干预期间,受试者用主导手进行挤球练习。TMS检测到的屈指热点无法辨别AC部位。基线时,与 C3 位点相比,AC 位点的手指屈肌 MEP 振幅更大,变异性更小。对 AC 位点进行 HD-tACS 干预后,MEP 振幅明显增加。然而,在 C3 位点应用 tACS 后未观察到明显变化。我们的研究结果证明,与 C3 位点相比,AC 位点的 HD-tACS 能对屈指浅肌(FDS)产生更好的神经调控效果。AC 定位方法可用于未来的 tES 研究。
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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
228
审稿时长
1 months
期刊介绍: Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.
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