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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Finite element modeling of electrode-skin contact impedance in electrical impedance tomography
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Finite element modeling of electrode-skin contact impedance in electrical impedance tomography

机译:电阻抗层析成像中电极-皮肤接触阻抗的有限元建模

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摘要

In electrical impedance tomography (EIT), the measured voltages are sensitive to electrode-skin contact impedance because the contact impedance and the current density through it are both high. Large electrodes were used to provide a more uniform current distribution and reduce the contact impedance. A large electrode differs from a point electrode in that it has shunting and edge effects that cannot be modeled by a single resistor. The finite-element method (FEM) was used to study the electric field distributions underneath an electrode, and three models were developed: a FEM model, a simplified FEM model, and a weighted load model. The FEM models considered both shunting and edge effects and closely matched the experimental measurements. It is concluded that FEM models of electrodes can be used to improve the performance of an electrical impedance tomography reconstruction algorithm.
机译:在电阻抗断层扫描(EIT)中,测量的电压对电极-皮肤接触阻抗敏感,因为接触阻抗和通过它的电流密度都很高。大电极用于提供更均匀的电流分布并降低接触阻抗。大电极与点电极的不同之处在于,它具有分流和边缘效应,无法通过单个电阻器来建模。使用有限元方法(FEM)来研究电极下方的电场分布,并开发了三个模型:FEM模型,简化FEM模型和加权负载模型。有限元模型同时考虑了分流和边缘效应,并与实验测量值紧密匹配。结论是,电极的有限元模型可以用来提高电阻抗层析成像重建算法的性能。

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