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Validation of Numerical Simulation for Subdural Cortical Stimulation Using Spherical Phantoms and Anatomically Realistic Head Phantom

机译:用球形模拟和解剖学现实头幻影验证硬膜体皮质刺激的数值模拟

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The purpose of this study is to investigate the accuracy of numerical simulation for electric brain stimulation. For this, we modelled brains using simple computational models with 2 and 3 shells, with and without realistic head geometry, and performed numerical simulations using finite element method (FEM). The corresponding head phantoms were constructed for the validation of simulation results. We implanted stimulation electrodes in the head phantom, and measured the electric potential induced by the electrodes. When comparing the electric potential obtained from numerical simulations and phantom experiments, both results showed similar trend and amplitude, with a relative difference of 13.64% on average in the realistic head model study. This result demonstrates that predicting the electric potential and its gradient (current density) using computational simulation is reliable with reasonably small deviation from the actual measurement.
机译:本研究的目的是研究电脑刺激数值模拟的准确性。为此,我们使用带有2和3个壳的简单计算模型建模大脑,其中没有现实的头几何形状,并使用有限元方法(FEM)进行了数值模拟。构建相应的头部模拟用于验证模拟结果。我们植入头部幻影中的刺激电极,并测量由电极诱导的电势。当比较从数值模拟和幻像实验获得的电位时,这两个结果表明了相似的趋势和幅度,相对差异为13.64%,平均值在现实的头模型研究中。该结果表明,预测使用计算模拟的电位及其梯度(电流密度)是可靠的,与实际测量相当小的偏差。

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