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Four-Terminal Imaging Using a Two-Terminal Electrical Impedance Tomography System

机译:使用两端子电阻层析成像系统的四端子成像

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Electrical impedance tomography (EIT) is a promising visualization measurement technique to reconstruct media distribution in a region of interest (ROI) through impedance measurements on its boundary. In this paper, a two-to-four-terminal mode is proposed for a two-terminal EIT system to take advantage of the four-terminal imaging mechanism. Using the two-to-four-terminal mode, data are acquired using the two-terminal EIT system, whereas the imaging mechanism is based on the four-terminal mode. To realize four-terminal imaging using a two-terminal EIT system, the mapping formulas of data from the two- to four-terminal mode and vice versa are derived. A novel imaging method based on two-to-four-terminal mode is proposed to decrease the ill conditionedness of the relevant inverse problem and implemented with the conjugate gradient iteration algorithm and the Tikhonov regularization algorithm, respectively. Simulation and experimental results validate the feasibility and effectiveness of the proposed method in reconstructing inclusions within the ROI clearly and exactly in both shape and location. Compared with the method based on two-terminal mode, the quality of the images reconstructed using the proposed method can be improved in terms of contrast, resolution, and antiartifact, i.e., reducing the artifacts in the reconstructed images, especially when distinguishing complicated distributions. Meanwhile, the imaging speed is also increased. Moreover, the availability of four-terminal imaging mechanism in a two-terminal EIT system makes it more flexible to choose an appropriate mode according to the application requirements and available instruments.
机译:电阻抗断层扫描(EIT)是一种有前途的可视化测量技术,可通过其边界上的阻抗测量来重建感兴趣区域(ROI)中的介质分布。在本文中,提出了一种针对两端子EIT系统的两至四端子模式,以利用四端子成像机制。使用2到4终端模式时,使用2终端EIT系统获取数据,而成像机制基于4终端模式。为了使用两端子EIT系统实现四端子成像,推导了从两端子模式到四端子模式的数据映射公式,反之亦然。提出了一种基于二到四端模式的成像方法,以减少相关逆问题的不适性,并分别采用共轭梯度迭代算法和Tikhonov正则化算法来实现。仿真和实验结果验证了该方法在形状和位置上清晰准确地重建ROI中夹杂物的可行性和有效性。与基于双终端模式的方法相比,使用本方法重建的图像质量可以在对比度,分辨率和抗伪影方面得到改善,即减少重建图像中的伪像,尤其是在区分复杂分布时。同时,成像速度也提高了。此外,两端子EIT系统中四端子成像机制的可用性使根据应用需求和可用仪器选择合适的模式更加灵活。

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