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A learnable EEG channel selection method for MI-BCI using efficient channel attention

Lina Tong, Yihui Qian, Liang Peng, Chen Wang, Zeng‐Guang Hou

2023Frontiers in Neuroscience28 citationsDOIOpen Access PDF

Abstract

Introduction: During electroencephalography (EEG)-based motor imagery-brain-computer interfaces (MI-BCIs) task, a large number of electrodes are commonly used, and consume much computational resources. Therefore, channel selection is crucial while ensuring classification accuracy. Methods: This paper proposes a channel selection method by integrating the efficient channel attention (ECA) module with a convolutional neural network (CNN). During model training process, the ECA module automatically assigns the channel weights by evaluating the relative importance for BCI classification accuracy of every channel. Then a ranking of EEG channel importance can be established so as to select an appropriate number of channels to form a channel subset from the ranking. In this paper, the ECA module is embedded into a commonly used network for MI, and comparative experiments are conducted on the BCI Competition IV dataset 2a. Results and discussion: The proposed method achieved an average accuracy of 75.76% with all 22 channels and 69.52% with eight channels in a four-class classification task, outperforming other state-of-the-art EEG channel selection methods. The result demonstrates that the proposed method provides an effective channel selection approach for EEG-based MI-BCI.

Topics & Concepts

Brain–computer interfaceElectroencephalographyComputer scienceChannel (broadcasting)Convolutional neural networkArtificial intelligenceSelection (genetic algorithm)Ranking (information retrieval)Pattern recognition (psychology)Task (project management)Machine learningSpeech recognitionPsychologyTelecommunicationsEngineeringSystems engineeringPsychiatryEEG and Brain-Computer InterfacesEpilepsy research and treatmentFunctional Brain Connectivity Studies
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