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An Instrumental Electrode Configuration for 3D Ultrasound Modulated Electrical Impedance Tomography

机译:用于3D超声调制电阻抗层析成像的仪器电极配置

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摘要

Ultrasound modulated electrical impedance tomography (UMEIT) is a novel hybrid imaging technique, which utilizes coupling between electric and acoustic modalities. Based on the forward solver along different current directions, an instrumental electrode configuration is proposed for 3D UMEIT. The proposed electrode configuration can produce a similar longitudinal current, making the power density distribution on the x-y plane approximately consistent with the corresponding conductivity distribution. Then, this satisfying power density is adopted to reconstruct a higher-resolution conductivity distribution. Therefore, the proposed electrode configuration contributes to improving the image reconstruction quality of UMEIT. Also, to clearly demonstrate its meaning in theory, the forward solver results are analyzed from an electrical point of view. In addition, the nonlinear partial differential equation (PDE) relating the power density to the measured data is derived again with a more reasonable expression. Finally, simulation with realistic geometry model of human breast is done and feasibility verifying experiment is made. Both simulation and experimental results validate the feasibility of the proposed electrode configuration.
机译:超声调制电阻抗断层扫描(UMEIT)是一种新颖的混合成像技术,它利用了电模态和声模态之间的耦合。基于沿不同电流方向的正向求解器,提出了用于3D UMEIT的仪器电极配置。提出的电极配置可以产生相似的纵向电流,从而使x-y平面上的功率密度分布与相应的电导率分布大致一致。然后,采用这种令人满意的功率密度来重建更高分辨率的电导率分布。因此,提出的电极配置有助于提高UMEIT的图像重建质量。另外,为了在理论上清楚地表明其含义,从电气角度分析了前向求解器的结果。此外,再次以更合理的表达式推导了将功率密度与测量数据相关的非线性偏微分方程(PDE)。最后,用人体乳腺的真实几何模型进行了仿真,并进行了可行性验证实验。仿真和实验结果均证实了所提出的电极配置的可行性。

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