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作为电阻抗成像测量系统的柔性电极

Flexible Electrodes as a Measuring System of Electrical Impedance Imaging.

作者信息

Wang Yi, Ping Xuecheng, Chen Xiaoyan, Wang Di

机构信息

College of Mechanical Engineering, Tianjin University of Science and Technology, Tianjin 300222, China.

Tianjin Key Laboratory of Integrated Design and On-Line Monitoring for Light Industry & Food Machinery and Equipment, Tianjin 300222, China.

出版信息

Materials (Basel). 2023 Feb 24;16(5):1901. doi: 10.3390/ma16051901.

Abstract

Electrical Impedance Tomography (EIT) is a detection imaging technology developed 30 years ago. When the conventional EIT measurement system is used, the electrode and the excitation measurement terminal are connected with a long wire, which is easily affected by external interference, and the measurement result is unstable. In this paper, we developed a flexible electrode device based on flexible electronics technology, which can be softly attached to the skin surface for real-time physiological monitoring. The flexible equipment includes an excitation measuring circuit and electrode, which eliminates the adverse effects of connecting long wires and improves the effectiveness of measuring signals. At the same time, the design also uses flexible electronic technology to make the system structure achieve ultra-low modulus and high tensile strength so that the electronic equipment has soft mechanical properties. Experiments have shown that when the flexible electrode is deformed, its function is completely unaffected, the measurement results remain stable, and the static and fatigue performances are satisfactory. The flexible electrode has high system accuracy and good anti-interference.

摘要

电阻抗断层成像(EIT)是30年前开发的一种检测成像技术。当使用传统的EIT测量系统时,电极与激励测量终端通过长导线连接,容易受到外部干扰的影响,测量结果不稳定。在本文中,我们基于柔性电子技术开发了一种柔性电极装置,它可以柔软地附着在皮肤表面进行实时生理监测。该柔性设备包括激励测量电路和电极,消除了连接长导线的不利影响,提高了测量信号的有效性。同时,该设计还采用柔性电子技术使系统结构实现超低模量和高拉伸强度,从而使电子设备具有柔软的机械性能。实验表明,当柔性电极变形时,其功能完全不受影响,测量结果保持稳定,静态和疲劳性能令人满意。该柔性电极具有较高的系统精度和良好的抗干扰能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c585/10004451/bd072e261a99/materials-16-01901-g001.jpg

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