Variability in EIT Images of Lung Ventilation as a Function of Electrode Planes and Body Positions.

Q3 Medicine Open Biomedical Engineering Journal Pub Date : 2014-06-27 eCollection Date: 2014-01-01 DOI:10.2174/1874120701408010035
Jie Zhang, Robert Patterson
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Abstract

This study is aimed at investigating the variability in resistivity changes in the lung region as a function of air volume, electrode plane and body position. Six normal subjects (33.8 ± 4.7 years, range from 26 to 37 years) were studied using the Sheffield Electrical Impedance Tomography (EIT) portable system. Three transverse planes at the level of second intercostal space, the level of the xiphisternal joint, and midway between upper and lower locations were chosen for measurements. For each plane, sixteen electrodes were uniformly positioned around the thorax. Data were collected with the breath held at end expiration and after inspiring 0.5, 1.0, or 1.5 liters of air from end expiration, with the subject in both the supine and sitting position. The average resistivity change in five regions, two 8x8 pixel local regions in the right lung, entire right, entire left and total lung regions, were calculated. The results show the resistivity change averaged over electrode positions and subject positions was 7-9% per liter of air, with a slightly larger resistivity change of 10 % per liter air in the lower electrode plane. There was no significant difference (p>0.05) between supine and sitting. The two 8x8 regions show a larger inter individual variability (coefficient of variation, CV, is from 30% to 382%) compared to the entire left, entire right and total lung (CV is from 11% to 51%). The results for the global regions are more consistent. The large inter individual variability appears to be a problem for clinical applications of EIT, such as regional ventilation. The variability may be mitigated by choosing appropriate electrode plane, body position and region of interest for the analysis.

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肺通气 EIT 图像的变异性与电极平面和身体位置的关系
本研究旨在调查肺部电阻率变化随空气量、电极平面和身体位置的变化情况。六名正常受试者(33.8 ± 4.7 岁,26 至 37 岁不等)使用 Sheffield 电阻抗断层扫描(EIT)便携式系统进行了研究。研究人员选择了第二肋间隙水平、髋关节水平以及上下位置中间的三个横向平面进行测量。在每个平面上,16 个电极被均匀地放置在胸廓周围。采集数据时,受试者处于仰卧和坐姿,呼气末屏住呼吸,从呼气末开始分别吸入 0.5 升、1.0 升或 1.5 升空气。计算了五个区域的平均电阻率变化,分别是右肺的两个 8x8 像素局部区域、整个右肺区域、整个左肺区域和整个肺区域。结果显示,电极位置和受试者位置的平均电阻率变化为每升空气 7-9%,电极下平面的电阻率变化稍大,为每升空气 10%。仰卧和坐姿之间没有明显差异(p>0.05)。与整个左肺、整个右肺和全肺(变异系数为 11% 至 51%)相比,两个 8x8 区域显示出更大的个体间变异性(变异系数为 30% 至 382%)。全球区域的结果较为一致。个体间的巨大差异似乎是 EIT 临床应用(如区域通气)的一个问题。可通过选择适当的电极平面、身体位置和感兴趣区域进行分析来减轻变异性。
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来源期刊
Open Biomedical Engineering Journal
Open Biomedical Engineering Journal Medicine-Medicine (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
4
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