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Effects of an Exoskeleton-Assisted Gait Motor Imagery Training in Functional Brain Connectivity

机译:外骨骼辅助步态运动图像训练对功能性大脑连接性的影响

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Lower-limb exoskeletons have been used in gait rehabilitation to facilitate the restoration of motor skills. These robotics systems could be complemented by Brain-Computer Interfaces (BCIs) to assist or rehabilitate people with walking disabilities. In this preliminary study, electroencephalography-based brain functional connectivity is analyzed during exoskeleton-assisted gait motor imagery (MI) training. Partial Directed Coherence (PDC) analysis was employed to assess the exchange of information flow between EEG signals during gait MI in four healthy subjects, two using an exoskeleton and two without using it. Besides, in order to explore the functional connectivity, an outflow index based on the number of significant directed connectivities revealed by the PDC analysis is proposed. We found that the outflow index increases in the central zone (C2, C3, C4) while decreases in the central-parietal (CP1, CP2) and fronto-central (FC1) zones when the training was assisted by an exoskeleton. The results obtained can be useful to obtain informative features for BCI applications as well as in motor rehabilitation.
机译:下肢外骨骼已用于步态康复中,以促进运动技能的恢复。这些机器人系统可以辅以脑机接口(BCI)来辅助或康复步行障碍者。在这项初步研究中,在外骨骼辅助步态运动图像(MI)训练过程中分析了基于脑电图的大脑功能连接性。在四个健康受试者中,采用部分定向相干(PDC)分析来评估步态MI期间脑电信号之间的信息流交换,其中两个使用外骨骼,两个不使用它。此外,为了探索功能连通性,提出了基于PDC分析揭示的重要有向连通性数量的流出指数。我们发现,在外骨骼辅助下进行训练时,流出指数在中央区域(C2,C3,C4)增加,而在中央顶区域(CP1,CP2)和额中(FC1)区域减少。获得的结果对于获得BCI应用以及运动康复方面的信息功能很有用。

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