首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Assessment of the Efficacy of EEG-Based MI-BCI With Visual Feedback and EEG Correlates of Mental Fatigue for Upper-Limb Stroke Rehabilitation
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Assessment of the Efficacy of EEG-Based MI-BCI With Visual Feedback and EEG Correlates of Mental Fatigue for Upper-Limb Stroke Rehabilitation

机译:基于EEG的MI-BCI与视觉反馈和EEG对高肢冲程康复的心理疲劳的疗效评估

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Objective: This single-arm multisite trial investigates the efficacy of the neurostyle brain exercise therapy towards enhanced recovery (nBETTER) system, an electroencephalogram (EEG)-based motor imagery brain-computer interface (MI-BCI) employing visual feedback for upper-limb stroke rehabilitation, and the presence of EEG correlates of mental fatigue during BCI usage. Methods: A total of 13 recruited stroke patients underwent thrice-weekly nBETTER therapy coupled with standard arm therapy over six weeks. Upper-extremity Fugl-Meyer motor assessment (FMA) scores were measured at baseline (week 0), post-intervention (week 6), and follow-ups (weeks 12 and 24). In total, 11/13 patients (mean age 55.2 years old, mean post-stroke duration 333.7 days, mean baseline FMA 35.5) completed the study. Results: Significant FMA gains relative to baseline were observed at weeks 6 and 24. Retrospectively comparing to the standard arm therapy (SAT) control group and BCI with haptic knob (BCI-HK) intervention group from a previous similar study, the SAT group had no significant gains, whereas the BCI-HK group had significant gains at weeks 6, 12, and 24. EEG analysis revealed significant positive correlations between relative beta power and BCI performance in the frontal and central brain regions, suggesting that mental fatigue may contribute to poorer BCI performance. Conclusion: nBETTER, an EEG-based MI-BCI employing only visual feedback, helps stroke survivors sustain short-term FMA improvement. Analysis of EEG relative beta power indicates that mental fatigue may be present. Significance: This study adds nBETTER to the growing literature of safe and effective stroke rehabilitation MI-BCI, and suggests an additional fatigue-monitoring role in future such BCI.
机译:目的:这种单臂多功能试验研究了神经外肌肤脑运动治疗对增强型恢复(NBETTER)系统的疗效,脑电图(EEG)基于电动脑电图脑 - 计算机接口(MI-BCI),采用上肢视觉反馈中风康复,并存在EEG在BCI使用过程中的心理疲劳相关。方法:共有13例招募的中风患者接受过三周的每周Nbetter治疗,六周内与标准臂治疗相结合。在基线(第0周),干预后(第6周)和随访(第12周和24周)测量上肢Fugl-Meyer电机评估(FMA)分数。总共11/13名患者(平均年龄55.2岁,平均行程后持续时间333.7天,平均基线FMA 35.5)完成了该研究。结果:在第6周和24周观察到相对于基线的显着的FMA增益。回顾性地与前一个类似的研究中的标准ARM治疗(SAT)对照组和BCI与触觉旋钮(BCI-HK)干预组相比,SAT组有没有显着的收益,而BCI-HK组在第6,12,24周内大幅提升,而EEG分析揭示了额叶和中央脑区的相对β功率和BCI性能之间的显着正相关,这表明精神疲劳可能有助于较差的BCI表现。结论:NBETTER,基于EEG的MI-BCI,只有视觉反馈,有助于中风幸存者维持短期FMA改进。 EEG相对β功率的分析表明可以存在精神疲劳。意义:本研究为安全有效的中风康复MI-BCI的不断增长的文学增加了NBETTER,并在未来的这种BCI中表明了额外的疲劳监测作用。

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