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Electrical impedance tomography based image reconstruction using finite element method

机译:基于电阻抗层析成像的有限元图像重建

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摘要

The resistivity of different human tissue varies with large difference ranging from cerebrosinal fluid of 63 ohm-cm to bone of 2000 ohm-cm [Deok W Kim et al 1985]. Images of such varied distributed resistivities inside an object can easily be reconstructed using image reconstruction algorithm. Electrical impedance tomography is relatively a new imaging technique which maps the distribution of electric resitivity of closed object such as our body using impedance plethysmograph principle. The aim of this paper is to reconstruct an image inside the phantom papaya which is a model of an uterus of human using finite element method.
机译:从63 ohm-cm的脑脊液到2000 ohm-cm的骨骼,不同人体组织的电阻率差异很大(Deok W Kim等1985)。使用图像重建算法可以轻松地重建对象内部这种变化的分布电阻率的图像。电阻抗层析成像技术是一种相对较新的成像技术,它使用阻抗体积描记器原理绘制了诸如我们身体之类的封闭物体的电导率分布图。本文的目的是使用有限元方法在木瓜木人体内重建图像,该木瓜是人子宫的模型。

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