| 1. |
Wang Y, Zhang B, Di L. Research progress of EEG-based emotion recognition: a survey. ACM Comput Surv, 2024, 56(11): 1-49..
|
| 2. |
謝松云, 雷凌俊, 孫江, 等. 基于IWOA-ELM算法的腦電情緒識別方法研究. 生物醫學工程學雜志, 2024, 41(1): 1-8..
|
| 3. |
Geng Y, Shi S, Hao X. Deep learning-based EEG emotion recognition: a comprehensive review. Neural Comput Appl, 2025, 37: 1919-1950..
|
| 4. |
Blanco A, Candela O, Orozco C, et al. Real-time EEG-based emotion recognition model using principal component analysis and tree-based models for neurohumanities. Front Hum Neurosci, 2024, 18: 1319574..
|
| 5. |
Liu Y, Xue W, Yang L, et al. Deep learning-based EEG emotion recognition: a review. Brain Sci, 2026, 16(1): 41..
|
| 6. |
Rehman A, Mujahid M, Elyassih A, et al. Comprehensive review and analysis on facial emotion recognition: performance insights into deep and traditional learning with current updates and challenges. Comput Mater Contin, 2025, 82(1): 41-72..
|
| 7. |
Sun C, Zhou Y, Huang X, et al. Combining wav2vec 2. 0 fine-tuning and conlearnnet for speech emotion recognition. Electronics, 2024, 13: 1-19..
|
| 8. |
周傳華, 郝敏, 曾輝, 等. 基于MHA-ResNet的語音情緒識別算法. 微電子學與計算機, 2024, 41(9): 41-46..
|
| 9. |
Tao H, Jiang Y, Li Q, et al. Cross-corpus speech emotion recognition based on attention-driven feature refinement and spatial reconstruction. Information, 2025, 16: 1-15..
|
| 10. |
Alqarni F, Sagheer A, Alabbad A, et al. Emotion-aware RoBERTa enhanced with emotion-specific attention and TF-IDF gating for fine-grained emotion recognition. Sci Rep, 2025, 15(1): 1-19..
|
| 11. |
Mou X, Peng Q, Sun Z, et al. A deep learning framework for news readers' emotion prediction based on features from news article and pseudo comments. IEEE Trans Cybern, 2023, 53(4): 2186-2199..
|
| 12. |
Liu C, Liu Z, Liu K, et al. Hippocampus alters visual representation to encode new memory. Cell Rep, 2025, 44(5): 115594..
|
| 13. |
Rolls E T. Emotion, motivation, decision-making, the orbitofrontal cortex, anterior cingulate cortex, and the amygdala. Brain Struct Funct, 2023, 228(5): 1201-1257..
|
| 14. |
Picard R W, Vyzas E, Healey J. Toward machine emotional intelligence: analysis of affective physiological state. IEEE Trans Pattern Anal Mach Intell, 2001, 23(10): 1175-1191..
|
| 15. |
Wang X, Ren Y, Luo Z, et al. Deep learning-based EEG emotion recognition: current trends and future perspectives. Front Psychol, 2023, 14: 1126994..
|
| 16. |
Lan Z R, Sourina O, Wang L P, et al. Real-time EEG-based emotion monitoring using stable features. Vis Comput, 2016, 32(3): 347-358..
|
| 17. |
Fan C, Liu X, Gu X, et al. Research on emotion recognition of EEG signal based on convolutional neural networks and high-order cross-analysis. J Healthc Eng, 2022, 2022: 6238172..
|
| 18. |
Majkowski A, Koodziej M, Rak R. Analysis of event-related potentials for emotion recognition. Prz Elektrotechniczny, 2024(5): 290-293..
|
| 19. |
Yu X, Li Z, Zang Z, et al. Real-time EEG-based emotion recognition. Sensors, 2023, 23: 1-12..
|
| 20. |
Nguyen D, Nguyen M T, Yamada K. Electroencephalogram based emotion recognition using hybrid intelligent method and discrete wavelet transform. Appl Sci, 2025, 15: 1-23..
|
| 21. |
Margaret M J, Masoodhu B N, Selvarajan M. Analysis of multiple emotions from electroencephalogram signals using machine learning models. Engineering Proceedings, 2024, 82(1): 1-41..
|
| 22. |
Li Y, Zheng W, Wang L, et al. From regional to global brain: a novel hierarchical spatial-temporal neural network model for EEG emotion recognition. IEEE Trans Affect Comput, 2022, 13(2): 568-578..
|
| 23. |
馮國紅, 鄭瀟, 張彬, 等. 基于獨立成分分析-遞歸圖和改進的高效能網絡的腦電情緒識別研究. 生物醫學工程學雜志, 2024, 41(6): 1103-1109..
|
| 24. |
汪佳衡, 王躍明, 姚林. 基于濾波器組長短時記憶網絡的腦電信號情緒識別. 生物醫學工程學雜志, 2021, 38(3): 447-454..
|
| 25. |
Yousefi M, Dehghani A, Taghaavifar H. Enhancing the accuracy of electroencephalogram-based emotion recognition through long short-term memory recurrent deep neural networks. Front Hum Neurosci, 2023, 17: 1174104..
|
| 26. |
Ma Y, Huang Z, Yang Y, et al. MSBiLSTM-attention: EEG emotion recognition model based on spatiotemporal feature fusion. Biomimetics, 2025, 10: 1-15..
|
| 27. |
Wang T, Huang X, Xiao Z, et al. EEG emotion recognition based on differential entropy feature matrix through 2D-CNN-LSTM network. EURASIP J Adv Signal Process, 2024, 49: 1-19..
|
| 28. |
Ding Y, Robinson N, Zhang S, et al. TSception: capturing temporal dynamics and spatial asymmetry from EEG for emotion recognition. IEEE Trans Affect Comput, 2023: 2238-2250..
|
| 29. |
Redwan U G, Zaman T, Mizan H B. Spatio-temporal CNN-BiLSTM dynamic approach to emotion recognition based on EEG signal. Comput Biol Med, 2025, 192(Pt A): 110277..
|
| 30. |
Huang Z, Ma Y, Wang R, et al. A model for EEG-based emotion recognition: CNN-bi-LSTM with attention mechanism. Electronics, 2023, 12(14): 1-16..
|
| 31. |
Zheng W L, Zhu J Y, Lu B L. Identifying stable patterns over time for emotion recognition from EEG. IEEE Trans Affect Comput, 2016, 10(3): 417-429..
|
| 32. |
Zheng W L, Lu B L. Investigating critical frequency bands and channels for EEG-based emotion recognition with deep neural networks. IEEE Trans Auton Ment Dev, 2015, 7(3): 162-175..
|
| 33. |
Xiao M, Zhu Z, Xie K, et al. MEEG and AT-DGNN: improving EEG emotion recognition with music introducing and graph-based learning. arXiv, 2024: 2407.05550..
|
| 34. |
Koelstra S, Muhl C, Soleymani M, et al. Deap: a database for emotion analysis using physiological signals. IEEE Trans Affect Comput, 2011, 3(1): 18-31..
|
| 35. |
Pillalamarri R, Shanmugam U. A review on EEG-based multimodal learning for emotion recognition. Artif Intell Rev, 2025, 58: 1-63..
|
| 36. |
Al-Hadithy S S, Abdalkafor A S, Al-Khateeb B. Emotion recognition in EEG signals: deep and machine learning approaches, challenges, and future directions. Comput Biol Med, 2025, 196(Pt A): 110713..
|
| 37. |
Zhang X, Cheng X, Liu H. TPRO-NET: an EEG-based emotion recognition method reflecting subtle changes in emotion. Sci Rep, 2024, 14(1): 13491..
|
| 38. |
Song T, Zheng W, Song P, et al. EEG emotion recognition using dynamical graph convolutional neural networks. IEEE Trans Affect Comput, 2020, 11(3): 532-541..
|
| 39. |
Lawhern V J, Solon A J, Waytowich N R, et al. EEGNet: a compact convolutional neural network for EEG-based brain-computer interfaces. J Neural Eng, 2018, 15(5): 056013..
|
| 40. |
Ding Y, Robinson N, Tong C, et al. LGGNet: learning from local-global-graph representations for brain-computer interface. IEEE Trans Neural Netw Learn Syst, 2024, 35(7): 9773-9786..
|
| 41. |
Alghamdi A, Ashraf M U, Bahaddad A A, et al. Cross-subject EEG signals-based emotion recognition using contrastive learning. Sci Rep, 2025, 15(1): 28295..
|
| 42. |
Qin Y, Li D, Qin X, et al. Research on dynamic domain adaptation selective ensemble algorithm for cross-subject EEG emotion classification. J King Saud Univ Com, 2025, 37: 1-20..
|