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Improving motor imagery BCI with user response to feedback

机译:通过用户对反馈的响应来改善运动图像BCI

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In brain-computer interface (BCI) systems, the non-stationarity of brain signals is known to be a challenge for training robust classifiers as other brain processes produce signals that coincide with those resulting from the desired brain activity. One source of interference is the user's cognitive response to the provided BCI feedback. In the case of motor imagery paradigms, this feedback can for instance be a cursor moving on the screen. The response to such feedback has been shown in general to be a source of noise that can add to the non-stationarity of the brain signal; however, in this work, we show that the user's brain response to this feedback can be used to improve the BCI performance. We first show in a motor imagery task that the user's brain responds to the direction of cursor movement, which is different for the cursor moving towards or away from the target (i.e. BCI feedback), and this feedback-related information is present in frequency bands similar to those used in motor imagery. Next, we propose a classifier that combines the user response to feedback together with the motor imagery signal itself, and show that this combined classifier can significantly outperform a conventional motor imagery classifier. Our results show an average of 11% and up to 22% improvement in classification accuracy across 10 participants.
机译:在脑机接口(BCI)系统中,已知大脑信号的非平稳性对于训练鲁棒的分类器是一个挑战,因为其他大脑过程所产生的信号与所需的大脑活动所产生的信号一致。干扰的一种来源是用户对提供的BCI反馈的认知反应。在运动图像范例的情况下,该反馈可以例如是光标在屏幕上移动。通常已经证明,对这种反馈的响应是​​噪声的来源,会增加脑信号的非平稳性。但是,在这项工作中,我们证明了用户的大脑对此反馈的反应可以用来改善BCI性能。我们首先在运动图像任务中显示用户的大脑对光标移动的方向做出了响应,这与光标向目标或远离目标的移动(即BCI反馈)不同,并且此反馈相关信息存在于频带中与汽车影像中使用的相似。接下来,我们提出了一种分类器,该分类器将用户对反馈的响应与运动图像信号本身结合在一起,并表明该组合的分类器可以显着优于传统的运动图像分类器。我们的结果显示10位参与者的分类准确率平均提高了11%,最高提高了22%。

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