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Effect of fat and muscle tissue conductivity on cortical currents - a tDCS study

机译:脂肪和肌肉组织电导率对皮层电流的影响-tDCS研究

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Cortical current density distribution induced by tDCS has been assessed using an anatomically accurate high resolution finite element head model. The study examines the influence of low conductive fat tissue and muscle layers on cortical modulation. Comparison between commonly used 5 layers and proposed 7 layers head model has been carried out using statistical matrices (RDM, MAG and CC). Results indicate that fat and muscle tissue have a profound effect on cortical current distribution. These layers reduce the effective volume of scalp, thus leading to a reduction in the preferential current pathways around scalp. These findings support the need of more complex head models so that more accurate estimates can be made on the effects of cortical current stimulation on neurons.
机译:由tDCS诱导的皮质电流密度分布已使用解剖学上精确的高分辨率有限元头部模型进行了评估。该研究检查了低传导性脂肪组织和肌肉层对皮层调制的影响。使用统计矩阵(RDM,MAG和CC)对常用的5层磁头模型和建议的7层磁头模型进行了比较。结果表明,脂肪和肌肉组织对皮层电流分布具有深远的影响。这些层减少了头皮的有效体积,因此导致头皮周围的优先电流路径减少。这些发现支持需要更复杂的头部模型,以便可以对皮质电流刺激对神经元的影响做出更准确的估计。

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