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首页> 外文期刊>IEEE Transactions on Medical Robotics and Bionics >Augmenting Motor Imagery Learning for Brain–Computer Interfacing Using Electrical Stimulation as Feedback
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Augmenting Motor Imagery Learning for Brain–Computer Interfacing Using Electrical Stimulation as Feedback

机译:使用电气刺激作为反馈的脑电电脑接口来增强电机图像

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摘要

Brain-computer Interfaces (BCI) and Functional electrical stimulation (FES) contribute significantly to induce cortical learning and to elicit peripheral neuronal activation processes and thus, are highly effective to promote motor recovery. This study aims at understanding the effect of FES as a neural feedback and its influence on the learning process for motor imagery tasks while comparing its performance with a classical visual feedback protocol. The participants were randomly separated into two groups: one group was provided with visual feedback (VIS) while the other received electrical stimulation (FES) as feedback. Both groups performed various motor imagery tasks while feedback was provided in form of a bi-directional bar for VIS group and targeted electrical stimulation on the upper and lower limbs for FES group. The results shown in this paper suggest that the FES based feedback is more intuitive to the participants, hence, the superior results as compared to the visual feedback. The results suggest that the convergence of BCI with FES modality could improve the learning of the patients both in terms of accuracy and speed and provide a practical solution to the BCI learning process in rehabilitation.
机译:脑计算机接口(BCI)和功能电刺激(FES)显着贡献以引发皮质学习和引发外周神经元激活过程,因此高效地促进电动机恢复。本研究旨在了解FES作为神经反馈的影响及其对电机图像任务的学习过程的影响,同时使用经典视觉反馈协议进行比较其性能。参与者随机分为两组:一组被提供视觉反馈(VI),而另一组接受电刺激(FES)作为反馈。两组两组进行了各种电动机图像任务,而在对VIS组的双向杆的形式提供反馈和对FES组的上肢和下肢的靶向电刺激。本文中所示的结果表明,基于FES的反馈对参与者更直观,因此与视觉反馈相比的卓越结果。结果表明,BCI与FES模态的收敛可以改善患者的学习,无论是准确性和速度,都可以在康复中提供BCI学习过程的实用解决方案。

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