Open Access
Issue |
JNWPU
Volume 43, Number 2, April 2025
|
|
---|---|---|
Page(s) | 357 - 367 | |
DOI | https://doi.org/10.1051/jnwpu/20254320357 | |
Published online | 04 June 2025 |
- JAP B T, LAL S, FISCHER P, et al. Using EEG spectral components to assess algorithms for detecting fatigue[J]. Expert Systems with Applications, 2009, 36(2): 2352–2359. [Article] [Google Scholar]
- FAN Xiaoli, NIU Haiyan, ZHOU Qianxiang, et al. Mental fatigue characteristics based on EEG analysis[J]. Journal of Beijing University of Aeronautics and Astronautics, 2016, 42(7): 1406–1413 (in Chinese) [Google Scholar]
- WANG X, LUO Z, ZHANG M, et al. The interaction between changes of muscle activation and cortical network dynamics during isometric elbow contraction: a sEMG and fNIRS study[J]. Frontiers in Bioengineering and Biotechnology, 2023, 11: 1176054. [Article] [Google Scholar]
- HADRA M,OMIDVARNIA A, MESBAH M. Temporal complexity of EEG encodes human alertness[J]. Physiological Measurement, 2022, 43(9): 095002. [Article] [Google Scholar]
- LI L, ZHANG M, CHEN Y , et al. TAGL: temporal-guided adaptive graph learning network for coordinated movement classification[J]. IEEE Trans on Industrial Informatics, 2024, 20(11): 12554–12564. [Article] [Google Scholar]
- GUO Z, PAN Y, ZHAO G, et al. Detection of driver vigilance level using EEG signals and driving contexts[J]. IEEE Trans on Reliability, 2018, 67(1): 370–380. [Article] [Google Scholar]
- CHEN K, LI Z, AI Q, et al. An improved CNN model based on fused time-frequency features for mental fatigue detection in BCIs[C]//12th International Conference on Information, Intelligence, Systems and Applications, Chania Crete, 2021 [Google Scholar]
- EUSKIRCHEN N, NITSCHE M A, VAN THRIEL C. Direct current stimulation in cell culture systems and brain slices-new approaches for mechanistic evaluation of neuronal plasticity and neuromodulation: state of the art[J]. Cells, 2021, 10(12): 3583. [Article] [Google Scholar]
- ZHOU Peng, WEI Jinwen, SUN Chang, et al. Research advancements in the regulation of transcranial direct current stimulation(tDCS) for cerebral cognitive function[J]. Chinese Journal of Biomedical Engineering, 2018, 37(2): 208–214 (in Chinese) [Google Scholar]
- MCINTIRE L K, MCKINLEY R A, GOODYEAR C, et al. The effects of anodal transcranial direct current stimulation on sleep time and efficiency[J]. Frontiers in Human Neuroscience, 2020, 14: 357. [Article] [Google Scholar]
- LINNHOFF S, WOLTER-WEGING J, ZAEHLE T. Objective electrophysiological fatigability markers and their modulation through tDCS[J]. Clinical Neurophysiology, 2021, 132(7): 1721–1732. [Article] [CrossRef] [PubMed] [Google Scholar]
- CZABANSKI R, JEZEWSKI M, LESKI J. Introduction to fuzzy systems[C]//Proceedings Electronic Technology Directions to the Year 2000, 1995 [Google Scholar]
- SAMIMA S, SARMA M, SAMANTA D, et al. Estimation and quantification of vigilance using ERPs and eye blink rate with a fuzzy model-based approach[J]. Cognition, Technology & Work, 2018, 21(3): 517–533 [Google Scholar]
- HOMAN R W. The 10-20 Electrode System and Cerebral Location[J]. American Journal of EEG Technology, 1988, 28(4): 269–279. [Article] [Google Scholar]
- LIU A, VÖRÖSLAKOS M, KRONBERG G, et al. Immediate neurophysiological effects of transcranial electrical stimulation[J]. Nature Communications, 2018, 9(1): 1–12. [Article] [CrossRef] [PubMed] [Google Scholar]
- SHAHID A, WILKINSON K, MARCU S, et al. STOP, THAT and one hundred other sleep scales[M]. New York: Springer, 2012 [CrossRef] [Google Scholar]
- DAI J, WANG H, YANG L, et al. The neuroelectrophysiological and behavioral effects of transcranial direct current stimulation on executive vigilance under a continuous monotonous condition[J/OL]. (2022-09-07)[2025-03-09]. [Article] [Google Scholar]
- PATTYN N, NEYT X, HENDERICKX D, et al. Psychophysiological investigation of vigilance decrement: boredom or cognitive fatigue?[J]. Physiology & Behavior, 2008, 93(1): 369–378 [Google Scholar]
- AL-SHARGIE F, TARIQ U, MIR H, et al. Vigilance decrement and enhancement techniques: a review[J]. Brain Sciences, 2019, 9(8): 178. [Article] [Google Scholar]
- PLEWNIA C, ZWISSLER B, LÄNGST I, et al. Effects of transcranial direct current stimulation(tDCS) on executive functions: influence of COMT Val/Met polymorphism[J]. Cortex, 2013, 49(7): 1801–1807. [Article] [Google Scholar]
- DUAN K, XIE S, ZHANG X, et al. Exploring the temporal patterns of dynamic information flow during attention network test(ANT)[J]. Brain Sciences, 2023, 13(2): 247–267. [Article] [Google Scholar]
- DUAN K, XIE S, XIE X, et al. Neural dynamics underlying the cue validity effect in target conflict resolution[J]. Cerebral Cortex, 2025, 35(4): 1–16 [Google Scholar]
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