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不同通气条件下胸部阻抗分布的变化。

Changes in the thoracic impedance distribution under different ventilatory conditions.

作者信息

Hahn G, Sipinková I, Baisch F, Hellige G

机构信息

Department of Anaesthesiological Research, University of Göttingen, Germany.

出版信息

Physiol Meas. 1995 Aug;16(3 Suppl A):A161-73. doi: 10.1088/0967-3334/16/3a/016.

Abstract

The present study was performed with the aim of checking the suitability of EIT in imaging regional thoracic impedance variations during lung ventilation under predefined conditions and to compare EIT with established reference techniques. A new technique of functional EIT imaging designed to visualize physiologically relevant information from the sequentially registered series of thoracic distributions was introduced. Experiments were performed on five spontaneously breathing healthy subjects and on 12 anaesthetized supine pigs. 16 electrodes were placed around the thorax and consecutive transthoracic impedance distributions were measured at a rate of 1 Hz (Sheffield APT system mark I, IBEES, Sheffield, UK). Several voluntary breathing manoeuvres were performed in human subjects and the tracings of local impedance were compared with standard spirometry. In animal experiments EIT was applied during artificial ventilation at different ventilation rates and during stepwise passive emptying and filling of either one or both lungs while the respiratory muscles were relaxes. Further, selective blockade of lung regions resulting in regionally reduced ventilation was performed and the capability of EIT to follow and differentiate local ventilatory disturbances was checked by reference techniques (x-ray and staining methods). The experiments revealed an overall agreement between the spirometric and impedance data in all breathing patterns performed. A linear relationship between changes of the air content of the lungs and the regional thoracic impedance was shown (intraindividual correlation coefficient range, 0.986-0.999; n = 12 animals). The functional images of the impedance distribution across the thorax reproduced adequately the typical anatomical characteristics of the pig and the human thorax. The spatial resolution of EIT functional images was sufficient to differentiate lung areas corresponding to approximately 20 ml tissue volume. EIT with the additional evaluation procedure of functional imaging was shown to be a suitable and reliable method of imaging different ventilatory conditions with the potential to become a useful tool for monitoring respiratory function.

摘要

本研究旨在检验电阻抗断层成像(EIT)在预定义条件下对肺通气期间区域性胸段阻抗变化进行成像的适用性,并将EIT与既定的参考技术进行比较。引入了一种新的功能性EIT成像技术,该技术旨在从胸部分布的连续记录系列中可视化生理相关信息。对5名自主呼吸的健康受试者和12只麻醉仰卧的猪进行了实验。在胸部周围放置16个电极,并以1 Hz的频率测量连续的经胸阻抗分布(英国谢菲尔德的Sheffield APT系统Mark I,IBEEs)。在人体受试者中进行了几种自主呼吸动作,并将局部阻抗的描记图与标准肺活量测定法进行了比较。在动物实验中,在不同通气速率的人工通气期间以及在一侧或双侧肺逐步被动排空和充盈且呼吸肌放松时应用EIT。此外,进行了导致局部通气减少的肺区域选择性阻断,并通过参考技术(X射线和染色方法)检查了EIT跟踪和区分局部通气障碍的能力。实验表明,在所有进行的呼吸模式中,肺活量测定数据和阻抗数据总体一致。显示出肺内空气含量变化与区域性胸段阻抗之间存在线性关系(个体内相关系数范围为0.986 - 0.999;n = 12只动物)。胸部阻抗分布的功能图像充分再现了猪和人体胸部的典型解剖特征。EIT功能图像的空间分辨率足以区分对应于约20 ml组织体积的肺区域。具有功能性成像附加评估程序的EIT被证明是一种适用于成像不同通气条件的可靠方法,有潜力成为监测呼吸功能的有用工具。

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