J Shanghai Jiaotong Univ Sci ›› 2022, Vol. 27 ›› Issue (2): 168-175.doi: 10.1007/s12204-021-2387-0
• Medicine-Engineering Interdisciplinary Research • Previous Articles Next Articles
HUANG Jiayang1 (黄嘉阳), YANG Pengfei1 * (杨鹏飞), WAN Bo1 (万波), ZHANG Zhiqiang2 (张志强)
Received:
2020-07-13
Online:
2022-03-28
Published:
2022-05-02
CLC Number:
HUANG Jiayang (黄嘉阳), YANG Pengfei* (杨鹏飞), WAN Bo (万波), ZHANG Zhiqiang (张志强). KDLPCCA-Based Projection for Feature Extraction in SSVEP-Based Brain-Computer Interfaces[J]. J Shanghai Jiaotong Univ Sci, 2022, 27(2): 168-175.
[1] | WOLPAW J R, BIRBAUMER N, MCFARLAND D J, et al. Brain-computer interfaces for communication and control [J]. Clinical Neurophysiology, 2002, 113(6):767-791. |
[2] | LOTTE F, BOUGRAIN L, CICHOCKI A, et al. A review of classification algorithms for EEG-based braincomputer interfaces: A 10 year update [J]. Journal of Neural Engineering, 2018, 15(3): 031005. |
[3] | WANG M, LI R, ZHANG R, et al. A wearable SSVEPbased BCI system for quadcopter control using headmounted device [J]. IEEE Access, 2018, 6(99): 26789-26798. |
[4] | NEUMANN N, K¨UBLER A, KAISER J, et al. Conscious perception of brain states: Mental strategies for brain-computer communication [J]. Neuropsychologia,2003, 41(8): 1028-1036. |
[5] | CHAURASIYA R, LONDHE N, GHOSH S. A novel weighted edit distance-based spelling correction approach for improving the reliability of Devanagari script-based P300 speller system [J]. IEEE Access,2016, 4: 8184-8198. |
[6] | SANTAMARIA L, JAMES C. Using brain connectivity metrics from synchrostates to perform motor imagery classification in EEG-based BCI systems [J].Healthcare Technology Letters, 2018, 5(3): 88-93. |
[7] | CURRAN E, SYKACEK P, STOKES M, et al. Cognitive tasks for driving a brain-computer interfacing system: A pilot study [J]. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2004, 12(1):48-54. |
[8] | NAKANISHI M, WANG Y, WANG Y T, et al. Generating visual flickers for eliciting robust steady-state visual evoked potentials at flexible frequencies using monitor refresh rate [J]. PLoS One, 2014, 9(6): e99235. |
[9] | CHEN X, CHEN Z, GAO S, et al. A high-ITR SSVEP-based BCI speller [J]. Brain-Computer Interfaces,2014, 1(3/4): 181-191. |
[10] | DREYER A M, HERRMANN C S. Frequencymodulatedsteady-state visual evoked potentials: A new stimulation method for brain-computer interfaces [J]. Journal of Neuroscience Methods, 2015, 241: 1-9. |
[11] | ORTIZ-ROSARIO A, ADELI H. Brain-computer interface technologies: From signal to action [J]. Reviews in the Neurosciences, 2013, 24(5): 537-552. |
[12] | TREJO L J, ROSIPAL R, MATTHEWS B. Braincomputer interfaces for 1-D and 2-D cursor control:Designs using volitional control of the EEG spectrum or steady-state visual evoked potentials [J]. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2006, 14(2): 225-229. |
[13] | JIA D, DAI H, TAKASHIMA Y, et al. EEG processing in Internet of medical things using non-harmonic analysis: Application and evolution for SSVEP responses [J]. IEEE Access, 2019, 7: 11318-11327. |
[14] | TRIGUI O, ZOUCH W, BEN M. Anti-noise capability improvement of minimum energy combination method for SSVEP detection [J]. International Journal of Advanced Computer Science and Applications, 2016, 7(9):393-401. |
[15] | ABU-ALQUMSAN M, PEER A. Advancing the detection of steady-state visual evoked potentials in braincomputer interfaces [J]. Journal of Neural Engineering,2016, 13(3): 036005. |
[16] | LIN Z, ZHANG C, WUW, et al. Frequency recognition based on canonical correlation analysis for SSVEPbased BCIs [J]. IEEE Transactions on Biomedical Engineering,2007, 54(6): 1172-1176. |
[17] | PORYZALA P, MATERKA A. Cluster analysis of CCA coefficients for robust detection of the asynchronous SSVEPs in brain-computer interfaces [J].Biomedical Signal Processing and Control, 2014, 10:201-208. |
[18] | BIN G, GAO X, WANG Y, et al. A high-speed BCI based on code modulation VEP [J]. Journal of Neural Engineering, 2011, 8(2): 025015. |
[19] | ZHANG Y, ZHOU G, JIN J, et al. Frequency recognition in SSVEP-based BCI using multiset canonical correlation analysis [J]. International Journal of Neural Systems, 2014, 24(4): 1450013. |
[20] | BAILLET S, MOSHER J C, LEAHY R M. Electromagnetic brain mapping [J]. IEEE Signal Processing Magazine, 2001, 18(6): 14-30. |
[21] | SAWATA R, OGAWA T, HASEYAMA M. Novel audio feature projection using KDLPCCA-based correlation with EEG features for favorite music classification[J]. IEEE Transactions on Affective Computing, 2019,10(3): 430-444. |
[22] | AKAHO S. A kernel method for canonical correlation analysis [EB/OL]. (2007-02-14).https://arxiv.org/abs/cs/0609071. |
[23] | ZHANG X, GUAN N, LUO Z, et al. Discriminative locality preserving canonical correlation analysis [M]//Pattern recognition. Berlin, Heidelberg:Springer, 2012: 341-349. |
[24] | HE X, NIYOGI P. Locality preserving projections[M]//Advances in neural information processing systems.Cambridge, USA: MIT Press, 2004. |
[25] | ARIS S A M, JALIL S Z A, BANI N A, et al.EEG features extraction and k-NN classification during eyes closed [C]// 2016 IEEE EMBS Conference on Biomedical Engineering and Sciences. Kuala Lumpur,Malaysia: IEEE, 2016: 679-684. |
[26] | RAKSHIT A, KHASNOBISH A, TIBAREWALA D N. A Naive Bayesian approach to lower limb classification from EEG signals [C]//2016 2nd International Conference on Control, Instrumentation, Energy & Communication (CIEC). Kolkata, India: IEEE, 2016: 140-144. |
[27] | BOSE S, RAMA V, WARANGAL N, et al. EEG signal analysis for Seizure detection using Discrete Wavelet Transform and Random Forest [C]//2017 International Conference on Computer and Applications (ICCA). Doha, Qatar: IEEE, 2017: 369-378. |
[28] | HERRMANN C S. Human EEG responses to 1-100 Hz flicker: Resonance phenomena in visual cortex and their potential correlation to cognitive phenomena [J].Experimental Brain Research, 2001, 137(3/4): 346-353. |
[1] | ZHANG Yanhe, ZANG Yuejin, CHEN Bo, XU Mingsheng. Radar HRRP Target Recognition Algorithm Based on Variational Auto-encoder with Disentangled Representation [J]. Air & Space Defense, 2022, 5(2): 87-93. |
[2] | WANG Wei, WANG Bing, HU Xiong, SUN Dejian. Online Degradation Assessment of Shore Bridge Hoisting Gearbox Based on Improved Symbolic Sequence Entropy and Logistic Regression Model [J]. Journal of Shanghai Jiao Tong University, 2021, 55(10): 1272-1280. |
[3] | WANG Jun, WANG Sai, REN Yuming, CHEN Dehong, CUI Shan, WEI Shaoming. Combining Denoising with Super Resolution for Target Detection and Recognition of SAR Image Based on Deep Learning [J]. Air & Space Defense, 2020, 3(3): 24-30. |
[4] | SHANG Nuonuo, LIANG Yan, ZHAI Hengfeng, YUAN Haojuan. An Efficient Method of Full-pulse Feature Extraction for Radar Signals [J]. Air & Space Defense, 2018, 1(4): 37-43. |
[5] | WANG Rui,LIU Bin,ZHOU Tianrun,YANG Yu. Vehicle Recognition in Acoustic and Seismic Networks via Collaboration Representation [J]. Journal of Shanghai Jiaotong University, 2018, 52(1): 103-110. |
[6] | JIAO Xuejun,ZHANG Zhen,JIANG Jin,WANG Chunhui,YANG Hanjun,XU Fenggang,CAO Yong,FU Jiahao. The Brain-Computer Interface Using Functional Near-Infrared Spectroscopy [J]. Journal of Shanghai Jiaotong University, 2017, 51(12): 1456-1463. |
[7] | WANG Yukui1,2* (王余奎), HUANG Zhijie1 (黄之杰), ZHAO Xucheng1 (赵徐成), ZHU Yi1 (朱 毅), WEI Dongtao1 (魏东涛). A Novel De-noising Method Based on Discrete Cosine Transform and Its Application in the Fault Feature Extraction of Hydraulic Pump [J]. Journal of shanghai Jiaotong University (Science), 2016, 21(3): 297-306. |
[8] | LI Hong-kun1 (李宏坤), ZHANG Zhi-xin2* (张志新), LI Xiu-gang3 (李秀刚), REN Yuan-jie1 (任远杰). Reliability Prediction Method Based on State Space Model for Rolling Element Bearing [J]. Journal of shanghai Jiaotong University (Science), 2015, 20(3): 317-321. |
[9] | WEN Cheng-yu* (文成玉), DONG Liang (董良), JIN Xin (金欣). Feature Extraction of Bearing Vibration Signals Using Second Generation Wavelet and Spline-Based Local Mean Decomposition [J]. Journal of shanghai Jiaotong University (Science), 2015, 20(1): 56-60. |
[10] | WANG Siyang,XU Liming,LAI Xiaoping. Grinding Wheel Overload Criterion and Diagnosis [J]. Journal of Shanghai Jiaotong University, 2015, 49(09): 1346-1352. |
[11] | XU Rong,WU Cong,JIANG ShiZheng,CHEN QiMei. Evaluation of Network-Level Traffic State Using 2DLNMF Algorithm [J]. Journal of Shanghai Jiaotong University, 2015, 49(08): 1131-1136. |
[12] | SU Sai-sai1 (苏赛赛), CHEN Ke-wei1,2 (陈克非), HUANG Qiu1* (黄秋). Discriminant Analysis in the Study of Alzheimer’s Disease Using Feature Extractions and Support Vector Machines in Positron Emission Tomography with 18F-FDG [J]. Journal of shanghai Jiaotong University (Science), 2014, 19(5): 555-560. |
[13] | CHENG Xiefeng,FU Nüting. A Review of Heart Sound Identification Recognition [J]. Journal of Shanghai Jiaotong University, 2014, 48(12): 1745-1750. |
[14] | WANG Jiajing1,2,ZHANG Zhusheng1,HE Weiping1. Identification of Tools with Failure Barcode Based on Multi-Information Fusion [J]. Journal of Shanghai Jiaotong University, 2014, 48(12): 1675-1680. |
[15] | ZHANG Zhi-fen* (张志芬), ZHONG Ji-yong (钟继勇), CHEN Yu-xi (陈玉喜), CHEN Shan-ben (陈善本). Feature Extraction and Modeling of Welding Quality Monitoring in Pulsed Gas Touch Argon Welding Based on Arc Voltage Signal [J]. Journal of shanghai Jiaotong University (Science), 2014, 19(1): 11-16. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||