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用于研究主动脉夹层引起的胸段生物阻抗变化的电极定位——一项模拟研究

Electrode Positioning to Investigate the Changes of the Thoracic Bioimpedance Caused by Aortic Dissection - A Simulation Study.

作者信息

Badeli V, Melito G M, Reinbacher-Köstinger A, Bíró O, Ellermann K

机构信息

Institute of Fundamentals and Theory in Electrical Engineering, Graz University of Technology, Graz, Austria.

Institute of Mechanics, Graz University of Technology, Graz, Austria.

出版信息

J Electr Bioimpedance. 2020 Jun 25;11(1):38-48. doi: 10.2478/joeb-2020-0007. eCollection 2020 Jan.

Abstract

Impedance cardiography (ICG) is a non-invasive method to evaluate several cardiodynamic parameters by measuring the cardiac-synchronous changes in the dynamic transthoracic electrical impedance. ICG allows us to identify and quantify conductivity changes inside the thorax by measuring the impedance on the thorax during a cardiac cycle. Pathologic changes in the aorta, like aortic dissection, will alter the aortic shape as well as the blood flow and consequently, the impedance cardiogram. This fact distorts the evaluated cardiodynamic parameters, but it could lead to the possibility to identify aortic pathology. A 3D numerical simulation model is used to compute the impedance changes on the thorax surface in case of the type B aortic dissection. A sensitivity analysis is applied using this simulation model to investigate the suitability of different electrode configurations considering several patient-specific cases. Results show that the remarkable pathological changes in the aorta caused by aortic dissection alters the impedance cardiogram significantly.

摘要

阻抗心动图(ICG)是一种通过测量动态经胸电阻抗的心脏同步变化来评估多个心脏动力学参数的非侵入性方法。ICG使我们能够通过在心动周期中测量胸部阻抗来识别和量化胸腔内的电导率变化。主动脉的病理变化,如主动脉夹层,会改变主动脉形态以及血流,进而改变阻抗心动图。这一事实会使评估的心脏动力学参数失真,但也可能带来识别主动脉病变的可能性。使用三维数值模拟模型来计算B型主动脉夹层情况下胸部表面的阻抗变化。利用该模拟模型进行敏感性分析,以研究考虑多种患者特定情况时不同电极配置的适用性。结果表明,主动脉夹层引起的主动脉显著病理变化会显著改变阻抗心动图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2eb/7531103/207dcfb1a567/joeb-11-038-g001.jpg

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