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EEG Pattern Comparison and Classification Performance of Motor Imagery Between Supernumerary and Inherent Limbs

Zhuang Wang, Yuan Liu, Wenjin Wu, Shuaifei Huang, Xingwei An

Year
2024
Citations
2

Abstract

Adding supernumerary robotic limbs (SRLs) to humans and controlling them directly through the brain are main goals for movement augmentation. However, whether neural patterns that are distinct from the traditional inherent limbs motor imagery (MI) paradigm can be extracted, which is essential for the high-dimensional control of external equipment. In this study, a novel type of MI paradigm based on SRLs was proposed, consisting of "the sixth-finger", "the third-arm" and "the third-leg", and validated the distinctness of EEG response patterns between the novel and the traditional (hand, arm and leg) MI paradigm. The results showed that imagining extra limbs induced more obvious event-related desynchronization (ERD) phenomenon in sensorimotor areas compared to imagining inherent limbs. Classification results indicate well separable performance among different mental tasks (all above 86%, with a maximum of 90.5%). This work proposed a novel type of MI paradigm, and offered new way for widening the control bandwidth of the BCI system.

Keywords

SupernumeraryMotor imageryElectroencephalographyComputer scienceArtificial intelligencePattern recognition (psychology)Speech recognitionBrain–computer interfaceComputer visionPsychology

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