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Three-Dimensional Electrical Impedance Tomography: A Topology Optimization Approach

机译:三维电阻抗层析成像:一种拓扑优化方法

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摘要

Electrical impedance tomography is a technique to estimate the impedance distribution within a domain, based on measurements on its boundary. In other words, given the mathematical model of the domain, its geometry and boundary conditions, a nonlinear inverse problem of estimating the electric impedance distribution can be solved. Several impedance estimation algorithms have been proposed to solve this problem. In this paper, we present a three-dimensional algorithm, based on the topology optimization method, as an alternative. A sequence of linear programming problems, allowing for constraints, is solved utilizing this method. In each iteration, the finite element method provides the electric potential field within the model of the domain. An electrode model is also proposed (thus, increasing the accuracy of the finite element results). The algorithm is tested using numerically simulated data and also experimental data, and absolute resistivity values are obtained. These results, corresponding to phantoms with two different conductive materials, exhibit relatively well-defined boundaries between them, and show that this is a practical and potentially useful technique to be applied to monitor lung aeration, including the possibility of imaging a pneumothorax.
机译:电阻抗断层扫描是一种基于对边界的测量来估计域内阻抗分布的技术。换句话说,给定该域的数学模型,其几何形状和边界条件,可以解决估计电阻抗分布的非线性逆问题。已经提出了几种阻抗估计算法来解决这个问题。在本文中,我们提出了一种基于拓扑优化方法的三维算法作为替代方案。利用此方法解决了一系列线性规划问题,其中包括约束。在每次迭代中,有限元方法都会在域模型中提供电势场。还提出了电极模型(因此,提高了有限元结果的准确性)。使用数值模拟数据和实验数据对算法进行测试,并获得绝对电阻率值。这些结果对应于具有两种不同导电材料的体模,在它们之间表现出相对明确的边界,并表明这是一种实用且潜在有用的技术,可用于监测肺通气,包括对气胸成像的可能性。

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