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Typical Electrode Configuration Analysis for Temporally Interfering Deep Brain Stimulation*

机译:典型电极配置分析,用于深脑刺激的深脑刺激 *

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Temporally interfering (TI) deep brain stimulation is an exciting neuromodulation technique, which can noninvasively drive neural activity in deep brain region. In this paper, two typical electrode configurations, opposite and cross, are modeled and, along different directions, the resulting distributions of envelope modulation amplitude are analyzed. In the 3D model, the two pairs of electrode are set in the x-y plane. First, one-layer and four-layer brain tissue structures are tested. Compared to one-layer, for four-layer brain structure, tissue of cerebrospinal fluid with higher conductivity shunts current back to the return electrode and as a result the location of maximum envelope modulation amplitude will be closer to the scalp. Then, taking brain structure into consideration, the models of the two electrode configurations are implemented with four-layer brain tissue distribution. Results demonstrate that, for opposite electrode configuration, along y direction, envelope modulation has a focused amplitude distribution, almost ellipse, in the deep of brain, which is effective for deep brain stimulation with target. And for cross electrode configuration, the relatively focused amplitude distribution, almost clover, is produced along x+y direction, which is suitable for wide-range area stimulation.
机译:在暂时干扰(TI)深脑刺激是一种激动的神经调节技术,可以在深脑区域中无侵扰地驱动神经活动。在本文中,分析了两个典型电极配置,相对的电极配置,相对和交叉,沿着不同的方向,分析所得到的包络调制幅度的分布。在3D模型中,两对电极设置在X-Y平面中。首先,测试一层和四层脑组织结构。与单层相比,对于四层脑结构,具有较高导电性的脑脊液组织分流回到返回电极,结果最大包络调制幅度的位置将更靠近头皮。然后,考虑大脑结构,两个电极配置的模型用四层脑组织分布实现。结果表明,对于相反的电极配置,沿着y方向,包络调制具有聚焦振幅分布,几乎椭圆在大脑深处,这对于对目标的深脑刺激是有效的。并且对于交叉电极配置,沿X + Y方向产生相对聚焦的幅度分布,几乎是三叶草,其适用于宽范围的区域刺激。

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