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使用纳米纤维网干电极的 EIT 柔性电极带。

Flexible electrode belt for EIT using nanofiber web dry electrodes.

机构信息

Impedance Imaging Research Center, Kyung Hee University, Korea.

出版信息

Physiol Meas. 2012 Oct;33(10):1603-16. doi: 10.1088/0967-3334/33/10/1603. Epub 2012 Sep 4.

Abstract

Efficient connection of multiple electrodes to the body for impedance measurement and voltage monitoring applications is of critical importance to measurement quality and practicality. Electrical impedance tomography (EIT) experiments have generally required a cumbersome procedure to attach the multiple electrodes needed in EIT. Once placed, these electrodes must then maintain good contact with the skin during measurements that may last several hours. There is usually also the need to manage the wires that run between the electrodes and the EIT system. These problems become more severe as the number of electrodes increases, and may limit the practicality and portability of this imaging method. There have been several trials describing human-electrode interfaces using configurations such as electrode belts, helmets or rings. In this paper, we describe an electrode belt we developed for long-term EIT monitoring of human lung ventilation. The belt included 16 embossed electrodes that were designed to make good contact with the skin. The electrodes were fabricated using an Ag-plated PVDF nanofiber web and metallic threads. A large contact area and padding were used behind each electrode to improve subject comfort and reduce contact impedances. The electrodes were incorporated, equally spaced, into an elasticated fabric belt. We tested the electrode belt in conjunction with the KHU Mark1 multi-frequency EIT system, and demonstrate time-difference images of phantoms and human subjects during normal breathing and running. We found that the Ag-plated PVDF nanofiber web electrodes were suitable for long-term measurement because of their flexibility and durability. Moreover, the contact impedance and stability of the Ag-plated PVDF nanofiber web electrodes were found to be comparable to similarly tested Ag/AgCl electrodes.

摘要

高效地将多个电极连接到人体以进行阻抗测量和电压监测应用对于测量质量和实用性至关重要。 电气阻抗断层成像(EIT)实验通常需要繁琐的过程来连接 EIT 所需的多个电极。 一旦放置好电极,在可能持续数小时的测量过程中,这些电极必须保持与皮肤良好接触。 通常还需要管理在电极和 EIT 系统之间运行的电线。 随着电极数量的增加,这些问题变得更加严重,并且可能限制这种成像方法的实用性和便携性。 已经有几项尝试描述了使用电极带、头盔或环等配置的人体-电极接口。 在本文中,我们描述了一种为人体肺部通气的长期 EIT 监测而开发的电极带。 该带包括 16 个压花电极,旨在与皮肤保持良好接触。 电极是使用镀银的 PVDF 纳米纤维网和金属线制造的。 每个电极后面都使用了较大的接触面积和衬垫,以提高舒适度并降低接触阻抗。 电极等间距地嵌入到弹性织物带中。 我们结合 KHU Mark1 多频 EIT 系统测试了电极带,并演示了正常呼吸和跑步时的幻影和人体受试者的时差图像。 我们发现,镀银的 PVDF 纳米纤维网电极因其灵活性和耐用性而适合长期测量。 此外,还发现镀银的 PVDF 纳米纤维网电极的接触阻抗和稳定性与经过类似测试的 Ag/AgCl 电极相当。

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