Fabric Vest Socket with Embroidered Electrodes for Control of Myoelectric Prosthesis

Sensors (Basel). 2020 Feb 21;20(4):1196. doi: 10.3390/s20041196.

Abstract

Myoelectric prostheses assist users to live their daily lives. However, the majority of users are primarily confined to forearm amputees because the surface electromyography (sEMG) that understands the motion intents should be acquired from a residual limb for control of the myoelectric prosthesis. This study proposes a novel fabric vest socket that includes embroidered electrodes suitable for a high-level upper amputee, especially for shoulder disarticulation. The fabric vest socket consists of rigid support and a fabric vest with embroidered electrodes. Several experiments were conducted to verify the practicality of the developed vest socket with embroidered electrodes. The sEMG signals were measured using commercial Ag/AgCl electrodes for a comparison to verify the performance of the embroidered electrodes in terms of signal amplitudes, the skin-electrode impedance, and signal-to-noise ratio (SNR). These results showed that the embroidered electrodes were as effective as the commercial electrodes. Then, posture classification was carried out by able-bodied subjects for the usability of the developed vest socket. The average classification accuracy for each subject reached 97.92%, and for all the subjects it was 93.2%. In other words, the fabric vest socket with the embroidered electrodes could measure sEMG signals with high accuracy. Therefore, it is expected that it can be readily worn by high-level amputees to control their myoelectric prostheses, as well as it is cost effective for fabrication as compared with the traditional socket.

Keywords: embroidered electrodes; fabric sensor; myoelectric control; posture classification; textile electrodes.

MeSH terms

  • Electrodes*
  • Electromyography / methods*
  • Humans
  • Neural Networks, Computer
  • Prosthesis Design
  • Signal Processing, Computer-Assisted
  • Signal-To-Noise Ratio