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Enhanced Motor Imagery Training Using a Hybrid BCI With Feedback

机译:使用带有反馈的混合BCI增强运动图像训练

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: Motor imagery-related mu/beta rhythms, which can be voluntarily modulated by subjects, have been widely used in EEG-based brain computer interfaces (BCIs). Moreover, it has been suggested that motor imagery-specific EEG differences can be enhanced by feedback training. However, the differences observed in the EEGs of naive subjects are typically not sufficient to provide reliable EEG control and thus result in unintended feedback. Such feedback can frustrate subjects and impede training. In this study, a hybrid BCI paradigm combining motor imagery and steady-state visually evoked potentials (SSVEPs) has been proposed to provide effective continuous feedback for motor imagery training. : During the initial training sessions, subjects must focus on flickering buttons to evoke SSVEPs as they perform motor imagery tasks. The output/feedback of the hybrid BCI is based on hybrid features consisting of motor imagery- and SSVEP-related brain signals. In this context, the SSVEP plays a more important role than motor imagery in generating feedback. As the training progresses, the subjects can gradually decrease their visual attention to the flickering buttons, provided that the feedback is still effective. In this case, the feedback is mainly based on motor imagery. : Our experimental results demonstrate that subjects generate distinguishable brain patterns of hand motor imagery after only five training sessions lasting approximately 1.5 h each. : The proposed hybrid feedback paradigm can be used to enhance motor imagery training. : This hybrid BCI system with feedback can effectively identify the intentions of the subjects.
机译::运动图像相关的mu / beta节律,可以由受试者自愿调节,已广泛用于基于EEG的脑计算机接口(BCI)。此外,已经提出,可以通过反馈训练来增强运动图像特定的脑电图差异。但是,天真受试者的脑电图观察到的差异通常不足以提供可靠的脑电图控制,因此会导致意想不到的反馈。这样的反馈可能会使受试者感到沮丧并阻碍训练。在这项研究中,提出了结合运动图像和稳态视觉诱发电位(SSVEP)的混合BCI范例,以为运动图像训练提供有效的连续反馈。注意:在最初的培训课程中,受试者必须专注于闪烁的按钮才能在执行运动图像任务时唤起SSVEP。混合BCI的输出/反馈基于混合特征,包括运动图像和与SSVEP相关的脑信号。在这种情况下,SSVEP在产生反馈方面比运动图像更重要。随着训练的进行,只要反馈仍然有效,受试者就可以逐渐减少对闪烁按钮的视觉注意力。在这种情况下,反馈主要基于运动图像。 :我们的实验结果表明,受试者仅进行了五次训练,每次持续约1.5小时,他们就会产生手部运动图像的可区分大脑模式。 :提出的混合反馈范例可用于增强运动图像训练。 :具有反馈的混合BCI系统可以有效地识别受试者的意图。

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