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采用薄膜印刷和纺织品刺绣技术的电刺激 (TENS) 电极的设计与分析。

Design and Analysis of Electrodes for Electrostimulation (TENS) Using the Technique of Film Printing and Embroidery in Textiles.

机构信息

Institute of Material Science of Textiles and Polymer Composites, Faculty of Material Technologies and Textile Design, Lodz University of Technology, 116 Żeromskiego Street, 90-924 Lodz, Poland.

出版信息

Sensors (Basel). 2021 Jul 13;21(14):4789. doi: 10.3390/s21144789.

Abstract

This article describes the development of transcutaneous nerve stimulating electrodes (TENS) by means of electrically conductive ink and conductive yarn. The scope of work covered a selection of three types of knitwear with a similar surface weight with different raw material composition. Stimulating electrodes were made by means of film printing and machine embroidery. The electrodes were verified after friction tests, washing, and mechanical deformation. Each process was followed by a check of the resistive properties and assessment of the sensations in order to evaluate their performance. Tests of the surface resistance of research materials confirmed the possibility of preparing textile electrodes for electrostimulation with the use of the film-printing technique and machine embroidery. Resistance of the electrodes made on all types of substrates ranged from approximately 1.00 × 10 Ω to around 2.00 × 10 Ω, while the electrodes are commercially available at the level of approximately 3.5 × 10 Ω. This paper underpins the validation of the conclusion that operational processes do not adversely affect the functioning of the developed textile electrodes.

摘要

本文通过导电油墨和导电纱线描述了经皮神经电刺激电极(TENS)的开发。工作范围包括选择三种具有相似表面重量但具有不同原材料组成的针织品。刺激电极通过薄膜印刷和机器刺绣制成。在摩擦试验、洗涤和机械变形后对电极进行了验证。每个过程都伴随着对电阻特性的检查和对感觉的评估,以评估它们的性能。研究材料表面电阻的测试证实了使用薄膜印刷技术和机器刺绣制备用于电刺激的纺织电极的可能性。在所有类型的基底上制备的电极的电阻值约为 1.00×10 Ω 至 2.00×10 Ω,而市售电极的电阻值约为 3.5×10 Ω。本文支持这样的结论,即操作过程不会对开发的纺织电极的功能产生不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/295c/8309830/35cfad75c87a/sensors-21-04789-g001.jpg

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