Research on the mechanism of motor muscle control based on optical EEG images.

SLAS Technol

School of Sports Science and Engineering, East China University of Science and Technology, Shanghai 200237, China. Electronic address:

Published: October 2024

AI Article Synopsis

  • The study focuses on improving rehabilitation therapy and human-computer interaction by examining motor muscle control mechanisms using optical EEG imaging technology instead of traditional EEG methods.
  • Optical EEG provides higher spatiotemporal resolution, allowing for more detailed insights into neural activity and muscle control during different motor tasks.
  • The research shows that optical EEG can accurately capture brain activity patterns related to motor muscles, offering new approaches to understanding and studying muscle control mechanisms.

Article Abstract

The study of motor muscle control mechanisms can improve rehabilitation therapy and human-computer interaction technology. The limitations of traditional electroencephalography (EEG) limit the comprehensive understanding of motor muscle control mechanisms. Therefore, this study aims to explore the mechanism of motor muscle control based on optical EEG images, in order to expand the understanding of the process of motor control. The study selected optical EEG imaging technology as the main data acquisition tool. Optical EEG images have higher spatiotemporal resolution and can provide more detailed neural activity information. This technology combines optical imaging with EEG images to obtain spatiotemporal information of brain activity in a short period of time. The device is composed of multiple optical sensors and can measure blood oxygen concentration and neuronal activity in the cerebral cortex. Preprocess EEG image data using image processing and signal processing techniques, then use computational methods and algorithms to detect activated regions, and evaluate their relationships using correlation analysis and statistical methods. By comparing EEG image data and motor muscle activity data under different motor tasks. The research results show that optical EEG imaging technology can provide more detailed information on brain neural activity and accurately capture the activity patterns of different motor muscles. These results provide new perspectives and methods for further studying the control mechanisms of motor muscles.

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Source
http://dx.doi.org/10.1016/j.slast.2024.100185DOI Listing

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