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人脑颅骨电刺激期间的电场测量

Measurements of Electric Fields During Cranial Electrical Stimulation in the Human Brain.

作者信息

Wang Minmin, Feng Tao, Jiang Hongjie, Zhu Junming, Feng Wuwei, Chhatbar Pratik Y, Zhang Jianmin, Zhang Shaomin

机构信息

Key Laboratory of Biomedical Engineering of Education Ministry, Zhejiang Provincial Key Laboratory of Cardio-Cerebral Vascular Detection Technology and Medicinal Effectiveness Appraisal, Department of Biomedical Engineering, School of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, China.

Department of Neurosurgery, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.

出版信息

Front Hum Neurosci. 2022 Feb 18;16:829745. doi: 10.3389/fnhum.2022.829745. eCollection 2022.

Abstract

Cranial electrical stimulation (CES) has been applied at various current levels in both adults and children with neurological conditions with seemingly promising but somewhat inconsistent results. Stimulation-induced spatial electric fields (EFs) within a specific brain region are likely a significant contributing factor for the biological effects. Although several simulation models have been used to predict EF distributions in the brain, these models actually have not been validated by CES-induced EF measurements in the live human brain. This study directly measured the CES-induced voltage changes with implanted stereotactic-electroencephalographic (sEEG) electrodes in twenty-one epilepsy participants (16 adults and 5 children) and then compared these measured values with the simulated ones obtained from the personalized models. In addition, we further investigated the influence of stimulation frequency, intensity, electrode montage and age on EFs in parts of participants. We found both measured voltages and EFs obtained are highly correlated with the predicted ones in our cohort (Voltages: = 0.93, < 0.001; EFs: = 0.73, < 0.001). In white matter and gray matter, the measured voltages linearly increased when the stimulation intensity increased from 5 to 500 μA but showed no significant changes (averaged coefficient of variation <4.10%) with changing stimulation frequency from 0.5 to 200 Hz. Electrode montage, but not age, significantly affects the distribution of the EFs ( = 5, < 0.01). Our measurements demonstrate that the individualized simulation model can reliably predict the CES-induced EFs in both adults and children. It also confirms that the CES-induced EFs highly depend on the electrode montages and individual anatomical features.

摘要

颅电刺激(CES)已在患有神经疾病的成人和儿童中以不同电流水平应用,结果看似有前景但有些不一致。特定脑区内刺激诱导的空间电场(EFs)可能是生物学效应的一个重要促成因素。尽管已经使用了几种模拟模型来预测大脑中的电场分布,但这些模型实际上尚未通过在活人脑中进行的CES诱导电场测量来验证。本研究使用植入的立体定向脑电图(sEEG)电极直接测量了21名癫痫参与者(16名成人和5名儿童)中CES诱导的电压变化,然后将这些测量值与从个性化模型获得的模拟值进行比较。此外,我们进一步研究了刺激频率、强度、电极组合和年龄对部分参与者电场的影响。我们发现,在我们的队列中,测得的电压和电场与预测值高度相关(电压:r = 0.93,P < 0.001;电场:r = 0.73,P < 0.001)。在白质和灰质中,当刺激强度从5 μA增加到500 μA时,测得的电压呈线性增加,但当刺激频率从0.5 Hz变化到200 Hz时,没有显示出显著变化(平均变异系数<4.10%)。电极组合而非年龄显著影响电场分布(F = 5,P < 0.01)。我们的测量表明,个性化模拟模型可以可靠地预测成人和儿童中CES诱导的电场。这也证实了CES诱导的电场高度依赖于电极组合和个体解剖特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4249/8895368/625b1ecd666f/fnhum-16-829745-g001.jpg

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