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Objective evaluation of fatigue by EEG spectral analysis in steady-state visual evoked potential-based brain-computer interfaces

机译:基于稳态视觉诱发电位的脑机界面中脑电波频谱分析的疲劳客观评估

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Background The fatigue that users suffer when using steady-state visual evoked potential (SSVEP)-based brain-computer interfaces (BCIs) can cause a number of serious problems such as signal quality degradation and system performance deterioration, users’ discomfort and even risk of photosensitive epileptic seizures, posing heavy restrictions on the applications of SSVEP-based BCIs. Towards alleviating the fatigue, a fundamental step is to measure and evaluate it but most existing works adopt self-reported questionnaire methods which are subjective, offline and memory dependent. This paper proposes an objective and real-time approach based on electroencephalography (EEG) spectral analysis to evaluate the fatigue in SSVEP-based BCIs. Methods How the EEG indices (amplitudes in δ, θ, α and β frequency bands), the selected ratio indices (θ/α and (θ?+?α)/β), and SSVEP properties (amplitude and signal-to-noise ratio (SNR)) changes with the increasing fatigue level are investigated through two elaborate SSVEP-based BCI experiments, one validates mainly the effectiveness and another considers more practical situations. Meanwhile, a self-reported fatigue questionnaire is used to provide a subjective reference. ANOVA is employed to test the significance of the difference between the alert state and the fatigue state for each index. Results Consistent results are obtained in two experiments: the significant increases in α and (θ?+?α)/β, as well as the decrease in θ/α are found associated with the increasing fatigue level, indicating that EEG spectral analysis can provide robust objective evaluation of the fatigue in SSVEP-based BCIs. Moreover, the results show that the amplitude and SNR of the elicited SSVEP are significantly affected by users’ fatigue. Conclusions The experiment results demonstrate the feasibility and effectiveness of the proposed method as an objective and real-time evaluation of the fatigue in SSVEP-based BCIs. This method would be helpful in understanding the fatigue problem and optimizing the system design to alleviate the fatigue in SSVEP-based BCIs.
机译:背景技术用户在使用基于稳态视觉诱发电位(SSVEP)的脑机接口(BCI)时遭受的疲劳可能会导致许多严重问题,例如信号质量下降和系统性能下降,用户不适感甚至风险。光敏性癫痫发作,严重限制了基于SSVEP的BCI的应用。为了减轻疲劳,一个基本步骤是对其进行测量和评估,但是大多数现有工作采用自我报告的问卷调查方法,这些方法具有主观性,离线性和记忆依赖性。本文提出了一种基于脑电图(EEG)频谱分析的客观,实时的方法来评估基于SSVEP的BCI的疲劳。方法EEG指数(δ,θ,α和β频带中的振幅),所选比率指数(θ/α和(θ?+?α)/β)和SSVEP特性(振幅和信噪比)如何通过两个基于SSVEP的精心设计的BCI实验,研究了随疲劳程度增加而产生的比率(SNR)变化,一个主要验证了有效性,另一个则考虑了更多实际情况。同时,使用自我报告的疲劳问卷来提供主观参考。 ANOVA用于测试每个指标的警戒状态和疲劳状态之间差异的显着性。结果在两个实验中获得了一致的结果:发现α和(θ?+?α)/β的显着增加以及θ/α的减小与疲劳程度的增加有关,这表明EEG谱分析可以提供基于SSVEP的BCI中疲劳的可靠客观评估。此外,结果表明,引起的SSVEP的幅度和SNR受用户疲劳的影响很大。结论实验结果证明了该方法作为基于SSVEP的BCI疲劳的客观实时评估的可行性和有效性。该方法将有助于理解疲劳问题并优化系统设计以减轻基于SSVEP的BCI中的疲劳。

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