An investigation of in-ear sensing for motor task classification.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33059338.
- Also identified by DOI 10.1088/1741-2552/abc1b6.
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Abstract
<i>Objective.</i>Our study aims to investigate the feasibility of in-ear sensing for human-computer interface.<i>Approach.</i>We first measured the agreement between in-ear biopotential and scalp-electroencephalogram (EEG) signals by channel correlation and power spectral density analysis. Then we applied EEG compact network (EEGNet) for the classification of a two-class motor task using in-ear electrophysiological signals.<i>Main results.</i>The best performance using in-ear biopotential with global reference reached an average accuracy of 70.22% (cf 92.61% accuracy using scalp-EEG signals), but the performance in-ear biopotential with near-ear reference was poor.<i>Significance.</i>Our results suggest in-ear sensing would be a viable human-computer interface for movement prediction, but careful consideration should be given to the position of the reference electrode.
Medical subject headings
- Brain-Computer Interfaces
- Electroencephalography