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The contribution of the lungs to thoracic impedance measurements: a simulation study based on a high resolution finite difference model

机译:肺对胸阻抗测量的贡献:基于高分辨率有限差分模型的模拟研究

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摘要

A high resolution electrical finite difference model of the human thorax based on a 43 slice MRI data set along with lead field theory was used to examine the contribution of the lungs to the total impedance for a typical mid-thoracic 2D EIT eight and sixteen electrode configuration. Regional analysis of the thoracic sources of impedance revealed that the maximum contribution of lungs to the total impedance was approximately 22% for the eight electrode array and 25% for the sixteen electrode array. Analysis of impedance distribution of the lungs using a mid-thoracic application showed that the contribution of impedance of each slice followed closely the volume of the lungs in the given slice. This suggests that the mid-thoracic application gives results reflecting the entire lung. The contributions of the lung impedance for the various electrode positions showed that the eight electrode configuration had a more smooth change between adjacent electrodes compared to the 16 electrode arrangement.
机译:基于43片MRI数据集和铅场理论的人类胸腔高分辨率电有限差分模型用于检查肺对典型胸中2D EIT八电极和十六电极配置的总阻抗的影响。胸部阻抗源的区域分析显示,对于八个电极阵列,肺对总阻抗的最大贡献约为22%,对于十六电极阵列,约为25%。使用中胸腔应用对肺部阻抗分布的分析表明,每个切片的阻抗贡献均紧随给定切片中肺部的体积。这表明胸中部应用可得出反映整个肺的结果。肺阻抗对各个电极位置的贡献表明,与16电极排列相比,八个电极配置在相邻电极之间具有更平滑的变化。

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