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3D modelling of the human thorax for ventilation distribution measured through electrical impedance tomography

机译:通过电阻抗断层成像技术测量的人体胸部3D通风分布模型

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Thoracic electrical impedance tomography (EIT) aims to reconstruct a cross-sectional image of the internal spatial distribution of conductivity from electrical measurements made by injecting small alternating currents via an electrode array placed on the surface of the thorax. It is a non-invasive, radiation-free monitoring technique. In this paper, true 3D thorax models with conductivity distribution or complex conductivity distribution under different ARDS conditions are built up in comparison with the 2.5D ones, and EIT-derived numeric indices are also employed for evaluation of the lung ventilation. The purpose of this paper is to study different effects of different thorax models with either conductivity or complex conductivity on the reconstructed images and ventilation indices.
机译:胸部电阻抗断层扫描(EIT)旨在根据通过放置在胸腔表面上的电极阵列注入小的交流电而获得的电测量结果来重建电导率内部空间分布的横截面图像。它是一种无创,无辐射的监视技术。与2.5D模型相比,本文建立了在不同ARDS条件下具有电导率分布或复数电导率分布的真实3D胸部模型,并且还采用了EIT衍生的数值指标来评估肺通气性。本文的目的是研究电导率或复电导率的不同胸腔模型对重建图像和通气指数的不同影响。

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