IEEE Trans Biomed Eng. 2022 Feb;69(2):955-962. doi: 10.1109/TBME.2021.3110527. Epub 2022 Jan 20.
Electrical impedance tomography (EIT) is a noninvasive imaging technology used to reconstruct the conductivity distribution in objects and the human body.
In recent years, numerous EIT systems and image reconstruction algorithms have been developed. However, most of these EIT systems require conventional electrodes with conductive gels (wet electrodes) and cannot be adapted to different body types, resulting in limited applicability.
In this study, a wearable wireless EIT belt with dry electrodes was designed to enable EIT imaging of the human body without using wet electrodes. The specific design of the belt mechanism and dry electrodes provide the advantages of easy wear and adaptation to different body sizes. Additionally, the Gauss-Newton method was used to optimize the EIT image.
Finally, experiments were performed on the phantom and human body to validate the performance of the proposed EIT belt.
The results demonstrate that the proposed system can provide accurate location information of the objects in the EIT image and the system can be successfully applied for noninvasive measurement of the human body.
电阻抗断层成像(EIT)是一种用于重建物体和人体电导率分布的非侵入性成像技术。
近年来,已经开发出许多 EIT 系统和图像重建算法。然而,这些 EIT 系统大多需要使用带有导电凝胶的传统电极(湿电极),并且不能适应不同的体型,因此适用性有限。
本研究设计了一种带有干电极的可穿戴无线 EIT 带,无需使用湿电极即可进行人体 EIT 成像。带机制和干电极的具体设计提供了易于佩戴和适应不同体型的优点。此外,还使用了高斯牛顿法对 EIT 图像进行了优化。
最后,在体模和人体上进行了实验,以验证所提出的 EIT 带的性能。
结果表明,所提出的系统可以提供 EIT 图像中物体的准确位置信息,并且可以成功应用于人体的非侵入性测量。