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Research PaperResearchia:202607.28044

ATCNet-CIAM for Multi-Session Motor Imagery EEG Signal Classification

Le Huu Son Hai

Abstract

Motor imagery (MI)-based electroencephalography is widely used in non-invasive brain--computer interfaces (BCIs), but robust decoding remains challenging due to inter-subject variability and cross-session non-stationarity. This work proposes ATCNet-CIAM, an enhanced attention temporal convolutional network that integrates a lightweight channel-integrated attention module (CIAM) into the ATCNet framework to improve channel-spatial feature representation for MI decoding. The proposed model is eval...

Submitted: July 28, 2026Subjects: Neuroscience; Bio-AI Interfaces

Description / Details

Motor imagery (MI)-based electroencephalography is widely used in non-invasive brain--computer interfaces (BCIs), but robust decoding remains challenging due to inter-subject variability and cross-session non-stationarity. This work proposes ATCNet-CIAM, an enhanced attention temporal convolutional network that integrates a lightweight channel-integrated attention module (CIAM) into the ATCNet framework to improve channel-spatial feature representation for MI decoding. The proposed model is evaluated on BCI Competition IV-2a, BCI Competition IV-2b, and the multi-day WBCIC-MI dataset under standard, within-session, and cross-session protocols. Experimental results show that ATCNet-CIAM achieves 86.32% accuracy on BCI IV-2a and 87.96% on BCI IV-2b under the standard protocol, while reaching 89.46% and 83.64% in the within-session WBCIC-MI on 2C and 3C, respectively. The proposed framework consistently improves classification stability and robustness under session-varying conditions, and ablation study confirms the complementary contribution of the proposed architectural components.


Source: arXiv:2607.23522v1 - http://arxiv.org/abs/2607.23522v1 PDF: https://arxiv.org/pdf/2607.23522v1 Original Link: http://arxiv.org/abs/2607.23522v1

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Submission Info
Date:
Jul 28, 2026
Topic:
Bio-AI Interfaces
Area:
Neuroscience
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