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On the Better Performance of Pianists with Motor Imagery-Based Brain-Computer Interface Systems

机译:钢琴家与基于电机的脑电电脑界面系统的钢琴家的性能

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摘要

Motor imagery (MI)-based brain-computer interface (BCI) systems detect electrical brain activity patterns through electroencephalogram (EEG) signals to forecast user intention while performing movement imagination tasks. As the microscopic details of individuals’ brains are directly shaped by their rich experiences, musicians can develop certain neurological characteristics, such as improved brain plasticity, following extensive musical training. Specifically, the advanced bimanual motor coordination that pianists exhibit means that they may interact more effectively with BCI systems than their non-musically trained counterparts; this could lead to personalized BCI strategies according to the users’ previously detected skills. This work assessed the performance of pianists as they interacted with an MI-based BCI system and compared it with that of a control group. The Common Spatial Patterns (CSP) and Linear Discriminant Analysis (LDA) machine learning algorithms were applied to the EEG signals for feature extraction and classification, respectively. The results revealed that the pianists achieved a higher level of BCI control by means of MI during the final trial (74.69%) compared to the control group (63.13%). The outcome indicates that musical training could enhance the performance of individuals using BCI systems.
机译:基于电机图像(MI)的脑电脑界面(BCI)系统通过脑电图(EEG)信号检测电脑活动模式,以预测用户意图,同时执行运动想象任务。随着个人大脑的微观细节直接被其丰富的经验直接塑造,音乐家可以在广泛的音乐训练之后制定某些神经系统特征,例如改善的大脑可塑性。具体而言,钢琴家展示的先进的生物运动协调意味着它们可以与BCI系统更有效地与非音乐培训的对应物相互作用;这可能会根据用户先前检测到的技能导致个性化的BCI策略。这项工作评估了钢琴家的表现,因为它们与基于MI的BCI系统相互作用,并将其与对照组进行比较。公共空间模式(CSP)和线性判别分析(LDA)机器学习算法分别应用于特征提取和分类的EEG信号。结果表明,钢琴家通过MI在最终试验期间达到了更高水平的BCI控制(74.69%)(63.13%)。结果表明,音乐培训可以使用BCI系统提高个人的表现。

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