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Nonlinear Difference Imaging Approach to Three-Dimensional Electrical Impedance Tomography in the Presence of Geometric Modeling Errors

机译:存在几何建模误差的三维电阻抗层析成像的非线性差分成像方法

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摘要

Objective: To evaluate the recently proposed nonlinear difference imaging approach to electrical impedance tomography (EIT) in realistic 3-D geometries. Methods: In this paper, the feasibility of nonlinear difference approach-based EIT is tested using simulation studies in 3-D geometries of thorax and larynx, and with an experimental study of a thorax-shaped water tank. All test cases exhibit severe modeling errors due to uncertainty in the boundary shape of the body. Results: In all test cases, the conductivity change reconstructed with nonlinear difference imaging outperforms the conventional reconstructions qualitatively and quantitatively. Conclusion: The results demonstrate that the nonlinear difference reconstructions tolerate geometrical modeling errors at least to the same extent as the conventional linear approach and produce quantitatively more accurate information on the conductivity change. Significance: Physiological processes that produce changes in the electrical conductivity of the body can be monitored with difference imaging based on EIT. The wide popularity of linearized difference imaging in EIT is mainly based on its good tolerance for the ubiquitous modeling errors, which are predominantly caused by inexact knowledge of the body geometry. However, the linearized difference imaging produces only qualitative information on the conductivity change, and the feasibility of the estimates also depends on the selection of the linearization point which ideally should be equal to the conductivity of the initial state. Based on the findings of this paper, these problems can be avoided by nonlinear difference imaging, and potentially the approach can enable quantitative imaging of conductivity change in medical applications.
机译:目的:在现实的3D几何形状中,评估最近提出的用于电阻抗层析成像(EIT)的非线性差异成像方法。方法:在本文中,通过对胸部和喉部的3D几何形状的模拟研究以及对胸部形状的水箱进行的实验研究,验证了基于非线性差异方法的EIT的可行性。由于身体边界形状的不确定性,所有测试用例都表现出严重的建模错误。结果:在所有测试案例中,通过非线性差分成像重建的电导率变化在质量和数量上均优于常规重建。结论:结果表明,非线性差异重建至少可以容忍与常规线性方法相同的几何建模误差,并且可以在定量上提供有关电导率变化的更准确信息。意义:产生人体电导率变化的生理过程可以通过基于EIT的差异成像进行监测。线性化差异成像在EIT中的广泛普及主要是由于其对普遍存在的建模误差的良好耐受性,这些误差主要是由于对人体几何形状的不了解而引起的。但是,线性化差值成像仅生成有关电导率变化的定性信息,估计的可行性还取决于线性化点的选择,理想情况下,线性化点的选择应等于初始状态的电导率。基于本文的发现,可以通过非线性差值成像避免这些问题,并且该方法有可能在医学应用中实现电导率变化的定量成像。

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