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使用韩国庆熙大学Mark1电阻抗断层成像(EIT)系统对犬类和人类肺部进行多频时差复电导率成像

Multi-frequency time-difference complex conductivity imaging of canine and human lungs using the KHU Mark1 EIT system.

作者信息

Kuen Jihyeon, Woo Eung Je, Seo Jin Keun

机构信息

College of Electronics and Information, Kyung Hee University, Korea.

出版信息

Physiol Meas. 2009 Jun;30(6):S149-64. doi: 10.1088/0967-3334/30/6/S10. Epub 2009 Jun 2.

Abstract

We evaluated the performance of the lately developed electrical impedance tomography (EIT) system KHU Mark1 through time-difference imaging experiments of canine and human lungs. We derived a multi-frequency time-difference EIT (mftdEIT) image reconstruction algorithm based on the concept of the equivalent homogeneous complex conductivity. Imaging experiments were carried out at three different frequencies of 10, 50 and 100 kHz with three different postures of right lateral, sitting (or prone) and left lateral positions. For three normal canine subjects, we controlled the ventilation using a ventilator at three tidal volumes of 100, 150 and 200 ml. Three human subjects were asked to breath spontaneously at a normal tidal volume. Real- and imaginary-part images of the canine and human lungs were reconstructed at three frequencies and three postures. Images showed different stages of breathing cycles and we could interpret them based on the understanding of the proposed mftdEIT image reconstruction algorithm. Time series of images were further analyzed by using the functional EIT (fEIT) method. Images of human subjects showed the gravity effect on air distribution in two lungs. In the canine subjects, the morphological change seems to dominate the gravity effect. We could also observe that two different types of ventilation should have affected the results. The KHU Mark1 EIT system is expected to provide reliable mftdEIT images of the human lungs. In terms of the image reconstruction algorithm, it would be worthwhile including the effects of three-dimensional current flows inside the human thorax. We suggest clinical trials of the KHU Mark1 for pulmonary applications.

摘要

我们通过对犬类和人类肺部的时差成像实验,评估了最新开发的电阻抗断层扫描(EIT)系统KHU Mark1的性能。我们基于等效均匀复电导率的概念,推导了一种多频时差EIT(mftdEIT)图像重建算法。成像实验在10、50和100 kHz三个不同频率下进行,采用右侧卧、坐姿(或俯卧)和左侧卧三种不同姿势。对于三只正常犬类受试者,我们使用呼吸机以100、150和200 ml三种潮气量控制通气。三名人类受试者被要求以正常潮气量自主呼吸。在三个频率和三种姿势下重建了犬类和人类肺部的实部和虚部图像。图像显示了呼吸周期的不同阶段,我们可以根据对所提出的mftdEIT图像重建算法的理解来解释它们。通过使用功能性EIT(fEIT)方法进一步分析了图像的时间序列。人类受试者的图像显示了重力对两肺空气分布的影响。在犬类受试者中,形态变化似乎主导了重力效应。我们还可以观察到两种不同类型的通气应该对结果产生了影响。预计KHU Mark1 EIT系统能够提供可靠的人类肺部mftdEIT图像。就图像重建算法而言,考虑人体胸部内三维电流流动的影响将是值得的。我们建议对KHU Mark1进行肺部应用的临床试验。

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