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Comparison of cephalic and extracephalic montages for Transcranial Direct Current Stimulation - A numerical study

机译:经颅直流电刺激的头部和头部外蒙太奇的比较-数值研究

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While studies have shown that the application of Transcranial Direct Current Stimulation (tDCS) has been beneficial in the stimulation of cortical activity and treatment of neurological disorders in humans, open questions remain regarding the placement of electrodes for optimal targeting of currents for a given functional area. Placement of electrodes has traditionally relied on knowledge of human anatomy and physiology, producing electrode montages that are believed to be best suited to a desired cortical region of stimulation. Given the difficulty of obtaining in vivo measurements of current density, modeling of conventional and alternative electrode montages via the Finite Element Method (FEM) has been utilized to provide insight into tDCS montage performance. Accurate simulations using a high definition, anatomically correct female human model based on the Visible Human Project dataset (the VHP-F model) have given evidence that extracephalic cathode locations provide deeper stimulation of the primary motor cortex than the traditional cephalic electrode montage.
机译:虽然研究表明,经颅直流电刺激(tDCS)的应用在刺激人类皮层活动和治疗神经系统疾病方面是有益的,但仍存在悬而未决的问题,即针对给定功能区域的最佳电流定位电极位置。传统上,电极的放置依赖于人体解剖学和生理学的知识,产生的电极蒙太奇被认为最适合于所需的刺激皮层区域。鉴于难以获得体内电流密度的测量值,已通过有限元方法(FEM)对常规和替代电极蒙太奇进行建模,以深入了解tDCS蒙太奇性能。使用基于Visible Human Project数据集(VHP-F模型)的高清晰度,解剖学上正确的女性人类模型进行的精确模拟已提供证据表明,与传统的头电极蒙太奇相比,头外阴极位置对原代运动皮层的刺激更深。

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