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用于电阻抗断层成像中可区分性分析的椭圆柱几何结构。

Elliptic cylinder geometry for distinguishability analysis in impedance tomography.

作者信息

Saka Birsen, Yilmaz Atila

机构信息

Department of Electrical and Electronics Engineering, Hacettepe University, 06532 Ankara, Turkey.

出版信息

IEEE Trans Biomed Eng. 2004 Jan;51(1):126-32. doi: 10.1109/TBME.2003.820335.

Abstract

Electrical impedance tomography (EIT) is a technique that computes the cross-sectional impedance distribution within the body by using current and voltage measurements made on the body surface. It has been reported that the image reconstruction is distorted considerably when the boundary shape is considered to be more elliptical than circular as a more realistic shape for the measurement boundary. This paper describes an alternative framework for determining the distinguishability region with a finite measurement precision for different conductivity distributions in a body modeled by elliptic cylinder geometry. The distinguishable regions are compared in terms of modeling error for predefined inhomogeneities with elliptical and circular approaches for a noncircular measurement boundary at the body surface. Since most objects investigated by EIT are noncircular in shape, the analytical solution for the forward problem for the elliptical cross section approach is shown to be useful in order to reach a better assessment of the distinguishability region defined in a noncircular boundary. This paper is concentrated on centered elliptic inhomogeneity in the elliptical boundary and an analytic solution for this type of forward problem. The distinguishability performance of elliptical cross section with cosine injected current patterns is examined for different parameters of elliptical geometry.

摘要

电阻抗断层成像(EIT)是一种通过利用在体表进行的电流和电压测量来计算体内横截面阻抗分布的技术。据报道,当将测量边界的形状视为比圆形更椭圆(作为更现实的形状)时,图像重建会出现相当大的失真。本文描述了一种替代框架,用于在由椭圆圆柱几何模型化的体内针对不同电导率分布以有限测量精度确定可区分区域。针对体表非圆形测量边界,根据预定义不均匀性的建模误差,用椭圆和圆形方法比较可区分区域。由于EIT研究的大多数物体形状是非圆形的,椭圆截面方法的正问题解析解被证明对于更好地评估在非圆形边界中定义的可区分区域是有用的。本文专注于椭圆边界中的中心椭圆不均匀性以及此类正问题的解析解。针对椭圆几何的不同参数,研究了采用余弦注入电流模式的椭圆截面的可区分性能。

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