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Analytical Solution for the Forward Problem of Magnetic Induction Tomography with Multi-layer Sphere Model

机译:多层球体模型磁感应断层扫描前进问题的分析解

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A 4-layer sphere model of human head was built for the forward problem of Magnetic Induction Tomography (MIT). The layers represent the brain, the CFS, the skull, and the scalp, respectively. Helmholtz equation in the spherical coordinates was constructed as control equation, and the vector magnetic potential was taken as a variable, the Variable Separation Method(VSM) was used to solve the equation companying with the boundary and interface conditions. The eddy current distribution in the model was obtained. As a result, the contour line of the eddy current field was plotted, the influence of the frequency to the induced voltage was analyzed. The simulation results demonstrate that this analytical method is validated in solving the forward problem of magnetic induction tomography. It may be used as a fast calculation method to generate the sensitivity matrix of the MIT inverse problem.
机译:为磁感应断层扫描(麻省理工学院)的前进问题而建立了人头的4层球模型。这些层分别代表大脑,CFS,颅骨和头皮。球形坐标中的Helmholtz方程被构造为控制方程,将载体磁电位作为变量,使用可变分离方法(VSM)来解决与边界和界面条件的等式。获得了模型中的涡流分布。结果,绘制了涡流场的轮廓线,分析了频率对感应电压的影响。仿真结果表明,这种分析方法验证了解决磁感应断层扫描的前向问题。它可以用作快速计算方法,以产生麻省理工学院逆问题的灵敏度矩阵。

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