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基于刺绣针法的 EMG 智能可穿戴用电极的制作与评价。

Fabrication and Evaluation of Embroidery-Based Electrode for EMG Smart Wear Using Moss Stitch Technique.

机构信息

Material and Component Convergence R&D Department, Korea Institute of Industrial Technology (KITECH), Ansan 15588, Republic of Korea.

Department of Nano Science and Technology, Sungkyunkwan University, Suwon 16419, Republic of Korea.

出版信息

Sensors (Basel). 2023 Nov 6;23(21):9012. doi: 10.3390/s23219012.

Abstract

Wearable 2.0 research has been conducted on the manufacture of smart fitness wear that collects bio-signals through the wearing of a textile-based electrode. Among them, the electromyography (EMG) suit measures the electrical signals generated by the muscles to check their activity, such as contraction and relaxation. General gel-type electrodes have been reported to cause skin diseases due to an uncomfortable feel and skin irritation when attached to the skin for a long time. Dry electrodes of various materials are being developed to solve this problem. Previous research has reported EMG detectio performance and conducted economic comparisons according to the size and shape of the embroidery electrode. On the other hand, these embroidery electrodes still have foreign body sensations. In this study, a moss sEMG electrode was produced with various shapes (W3 and WF) and loop lengths (1-5 mm). The optimized conditions of the embroidery-based electrodes were derived and analyzed with the tactile comfort factors and sensing performances. As the loop length of the electrode increased, MIU and Qmax increased, but the SMD decreased due to the free movement of the threads constituting the loop. Impedance and sEMG detection performance showed different trends depending on the electrode type.

摘要

可穿戴 2.0 研究已经在制造通过穿着基于纺织品的电极来收集生物信号的智能健身服装方面展开。其中,肌电图 (EMG) 套装测量肌肉产生的电信号,以检查其活动,如收缩和放松。由于长期贴附在皮肤上会引起不适感和皮肤刺激,普通的凝胶型电极已被报道会引起皮肤病。正在开发各种材料的干电极来解决这个问题。以前的研究已经根据刺绣电极的大小和形状报告了 EMG 检测性能,并进行了经济比较。另一方面,这些刺绣电极仍然有异物感。在这项研究中,使用各种形状(W3 和 WF)和环长(1-5 毫米)制作了苔藓 sEMG 电极。通过触觉舒适度因素和传感性能,得出并分析了基于刺绣的电极的优化条件。随着电极环长度的增加,MIU 和 Qmax 增加,但由于构成环的线的自由运动,SMD 减小。阻抗和 sEMG 检测性能表现出不同的趋势,这取决于电极类型。

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