Wang Hongli, Yu Hongli, Wang Chao, Xu Guizhi, Guo Lei
State Key Laboratory of Reliability and Intelligence of Electrical Equipment, Hebei University of Technology, Tianjin 300130, P.R.China.
Tianjin Key Laboratory of Bioelectromagnetic Technology and Intelligent Health, Hebei University of Technology, Tianjin 300130, P.R.China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2021 Aug 25;38(4):638-646. doi: 10.7507/1001-5515.202005050.
Transcranial direct current stimulation (tDCS) is a brain stimulation intervention technique, which has the problem of different criteria for the selection of stimulation parameters. In this study, a four-layer real head model was constructed. Based on this model, the changes of the electric field distribution in the brain with the current intensity, electrode shape, electrode area and electrode spacing were analyzed by using finite element simulation technology, and then the optimal scheme of electrical stimulation parameters was discussed. The results showed that the effective stimulation region decreased and the focusing ability increased with the increase of current intensity. The normal current density of the quadrilateral electrode was obviously larger than that of the circular electrode, which indicated that the quadrilateral electrode was more conducive to current stimulation of neurons. Moreover, the effective stimulation region of the quadrilateral electrode was more concentrated and the focusing ability was stronger. The focusing ability decreased with the increase of electrode area. Specifically, the focusing tended to increase first and then decrease with the increase of electrode spacing and the optimal electrode spacing was 64.0-67.2 mm. These results could provide some basis for the selection of electrical stimulation parameters.
经颅直流电刺激(tDCS)是一种脑刺激干预技术,存在刺激参数选择标准不一的问题。本研究构建了一个四层真实头部模型。基于该模型,利用有限元模拟技术分析了脑内电场分布随电流强度、电极形状、电极面积和电极间距的变化情况,进而探讨了电刺激参数的优化方案。结果表明,随着电流强度的增加,有效刺激区域减小,聚焦能力增强。四边形电极的正常电流密度明显大于圆形电极,这表明四边形电极更有利于对神经元进行电流刺激。此外,四边形电极的有效刺激区域更集中,聚焦能力更强。聚焦能力随电极面积的增加而降低。具体而言,聚焦能力随电极间距的增加先增大后减小,最佳电极间距为64.0 - 67.2毫米。这些结果可为电刺激参数的选择提供一定依据。