Xiao Chunyan, Lei Yinzhao
School of Automation and Electrical Engineering, Beihang University, Beijing 100083, People's Republic of China.
Phys Med Biol. 2005 Jun 7;50(11):2663-74. doi: 10.1088/0031-9155/50/11/015. Epub 2005 May 18.
A model of a multilayered spherical volume conductor with four electrodes is built. In this model, a time-harmonic electric current is injected into the sphere through a pair of drive electrodes, and electric potential is measured by the other pair of measurement electrodes. By solving the boundary value problem of the electromagnetic field, the analytical solutions of electric potential and impedance in the whole conduction region are derived. The theoretical values of electric potential on the surface of the sphere are in good accordance with the experimental results. The analytical solutions are then applied to the simulation of the forward problem of brain electrical impedance tomography (EIT). The results show that, for a real human head, the imaginary part of the electric potential is not small enough to be ignored at above 20 kHz, and there exists an approximate linear relationship between the real and imaginary parts of the electric potential when the electromagnetic parameters of the innermost layer keep unchanged. Increase in the conductivity of the innermost layer leads to a decrease of the magnitude of both real and imaginary parts of the electric potential on the scalp. However, the increase of permittivity makes the magnitude of the imaginary part of the electric potential increase while that of the real part decreases, and vice versa.
构建了一个具有四个电极的多层球形体积导体模型。在该模型中,时谐电流通过一对驱动电极注入球体,而电势则由另一对测量电极进行测量。通过求解电磁场的边值问题,推导出了整个导电区域内电势和阻抗的解析解。球体表面电势的理论值与实验结果吻合良好。然后将这些解析解应用于脑电阻抗断层成像(EIT)正向问题的模拟。结果表明,对于真实的人头,在高于20kHz时,电势的虚部大到不能忽略,并且当最内层的电磁参数保持不变时,电势的实部和虚部之间存在近似线性关系。最内层电导率的增加导致头皮上电势实部和虚部的幅值均减小。然而,电容率的增加使得电势虚部幅值增加而实部幅值减小,反之亦然。