首页> 外文会议>Advance Computing Conference,IACC,2009 IEEE International >A FEM-Based Forward Solver for Studying the Forward Problem of Electrical Impedance Tomography (EIT) with A Practical Biological Phantom
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A FEM-Based Forward Solver for Studying the Forward Problem of Electrical Impedance Tomography (EIT) with A Practical Biological Phantom

机译:基于FEM的前向求解器,用于研究具有实用生物体模的电阻抗层析成像(EIT)的正向问题

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A Finite Element Method based forward solver is developed for solving the forward problem of a 2D-Electrical Impedance Tomography. The Method of Weighted Residual technique with a Galerkin approach is used for the FEM formulation of EIT forward problem. The algorithm is written in MatLAB7.0 and the forward problem is studied with a practical biological phantom developed. EIT governing equation is numerically solved to calculate the surface potentials at the phantom boundary for a uniform conductivity. An EIT-phantom is developed with an array of 16 electrodes placed on innerthe surface of the phantom tank filled with KCl solution. A sinusoidal current is injected through the current electrodes and the differential potentials across the voltage electrodes are measured. Measured data is compared with the differential potential calculated for known current and solution conductivity. Comparing measured voltage with the calculated data it is attempted to find the sources of errors to improve data quality for better image reconstruction.
机译:为解决二维电阻抗层析成像的正向问题,开发了一种基于有限元方法的正向求解器。 EIT正向问题的FEM公式使用具有Galerkin方法的加权残差技术方法。该算法用MatLAB7.0编写,并通过开发实用的生物模型研究了正向问题。对EIT控制方程进行数值求解,以计算幻影边界处的表面电势,以获得均匀的电导率。通过在装有KCl溶液的幻象罐内表面放置16个电极阵列来开发EIT幻象。通过电流电极注入正弦电流,并测量电压电极两端的差分电势。将测得的数据与针对已知电流和溶液电导率计算出的差分电势进行比较。尝试将测得的电压与计算得出的数据进行比较,以寻找误差源,以改善数据质量,以实现更好的图像重建。

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