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Effect of biased feedback on motor imagery learning in BCI-teleoperation system

机译:偏置反馈对BCI远程操作系统中运动图像学习的影响

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摘要

Feedback design is an important issue in motor imagery BCI systems. Regardless, to date it has not been reported how feedback presentation can optimize co-adaptation between a human brain and such systems. This paper assesses the effect of realistic visual feedback on users' BCI performance and motor imagery skills. We previously developed a tele-operation system for a pair of humanlike robotic hands and showed that BCI control of such hands along with first-person perspective visual feedback of movements can arouse a sense of embodiment in the operators. In the first stage of this study, we found that the intensity of this ownership illusion was associated with feedback presentation and subjects' performance during BCI motion control. In the second stage, we probed the effect of positive and negative feedback bias on subjects' BCI performance and motor imagery skills. Although the subject specific classifier, which was set up at the beginning of experiment, detected no significant change in the subjects' online performance, evaluation of brain activity patterns revealed that subjects' self-regulation of motor imagery features improved due to a positive bias of feedback and a possible occurrence of ownership illusion. Our findings suggest that in general training protocols for BCIs, manipulation of feedback can play an important role in the optimization of subjects' motor imagery skills.
机译:反馈设计是汽车影像BCI系统中的重要问题。无论如何,迄今为止,尚未报道反馈呈现如何可以优化人脑与此类系统之间的协同适应。本文评估了逼真的视觉反馈对用户BCI性能和运动成像技能的影响。我们先前开发了用于一对类似人的机器人手的远程操作系统,并显示出BCI对此类手的控制以及动作的第一人称视角视觉反馈可以在操作员中引起一种实施感。在这项研究的第一阶段,我们发现这种所有权错觉的强度与BCI运动控制过程中的反馈表现和受试者的表现有关。在第二阶段,我们探讨了正反馈和负反馈偏差对受试者的BCI表现和运动成像技能的影响。尽管在实验开始时设置的受试者特定分类器未检测到受试者在线表现的显着变化,但对大脑活动模式的评估显示,由于以下因素的正偏差,受试者对运动图像特征的自我调节得以改善反馈和可能出现的所有权错觉。我们的研究结果表明,在针对BCI的常规培训协议中,反馈的操纵可在优化受试者的运动成像技能中发挥重要作用。

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