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Finite Element Mapping for Efficient Image Reconstruction in Rotational Electrical Impedance Tomography

机译:旋转电阻断层扫描中有效图像重建的有限元映射

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Electrical impedance tomography (EIT) is a label free harmless imaging method capable of imaging differences in electrical conductivity of a sample. In EIT, a low frequency current is injected into the sample, voltage differences on sample surface are measured, and from these measurements, interior conductivity distribution is reconstructed. To increase the accuracy of reconstruction, rotational EIT (rEIT) has been proposed where independent measurements are taken from multiple rotational positions around the sample. However, the benefit of conventional electrode configurations are limited to small number of rotational positions. We have presented an approach called Limited Angle Full Revolution rEIT (LAFR-rEIT) that uses a small number of electrodes and large number of rotational measurement position measurements over 360°. The results are comparable to previous rotational EIT implementations, and furthermore, the limited EIT boundary access provides space for simultaneous attachment of other measurement modalities. On the other hand, the increased number of measurement positions cause an increase in computational complexity, and optimization is required until 3D applications are feasible. This work presents modifications into finite element mesh presentation of the imaging domain and outlines an optimization, that enables sufficiently light rotation for 3D LAFR-rEIT computations.
机译:电阻抗断层扫描(EIT)是一种可用无害化成像方法,能够成像样品的电导率差异。在EIT中,将低频电流注入样品中,测量样品表面上的电压差,并且从这些测量开始,重建内部电导率分布。为了提高重建的准确性,已经提出了旋转EIT(REIT),其中从样品周围的多个旋转位置取出独立测量。然而,传统电极配置的益处仅限于少量旋转位置。我们提出了一种称为有限角度全旋转REIT(LAFR-REIT)的方法,它使用少量电极和大量旋转测量位置测量值超过360°。结果与先前的旋转EIT实现相当,此外,有限的EIT边界接入提供了用于同时附着其他测量模式的空间。另一方面,增加的测量位置导致计算复杂性的增加,并且需要优化直到3D应用是可行的。该工作将修改呈现成成像域的有限元网格呈现,并概述了优化,这使得能够足够轻,用于3D Lafr-Reit计算。

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