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Validation of a finite-element solution for electrical impedance tomography in an anisotropic medium

机译:各向异性介质中电阻抗层析成像的有限元解决方案的验证

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摘要

Electrical impedance tomography is an imaging method, with which volumetric images of conductivity are produced by injecting electrical current and measuring boundary voltages. It has the potential to become a portable non-invasive medical imaging technique. Until now, implementations have neglected anisotropy even though human tissues such as bone, muscle and brain white matter are markedly anisotropic. We present a numerical solution using the finite-element method that has been modified for modelling anisotropic conductive media. It was validated in an anisotropic domain against an analytical solution in an isotropic medium after the isotropic domain was diffeomorphically transformed into an anisotropic one. Convergence of the finite element to the analytical solution was verified by showing that the finite-element error norm decreased linearly related to the finite-element size, as the mesh density increased, for the simplified case of Laplace's equation in a cubic domain with a Dirichlet boundary condition.
机译:电阻抗断层扫描是一种成像方法,通过注入电流并测量边界电压来生成电导率的体积图像。它有可能成为便携式非侵入性医学成像技术。到目前为止,即使人类组织(例如骨骼,肌肉和脑白质)具有明显的各向异性,实现也忽略了各向异性。我们提出了一种使用有限元方法进行数值求解的方法,该方法已经过修改,可用于各向异性导电介质的建模。在将各向同性域微分变换为各向异性域后,在各向异性域中针对各向同性介质中的分析溶液对它进行了验证。证明了有限元误差范数随着网格密度的增加与有限元尺寸线性相关地减小,从而证明了有限元对解析解的收敛性。边界条件。

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