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Profiling BCI users based on contralateral activity to improve kinesthetic motor imagery detection

机译:根据对侧活动对BCI用户进行分析,以改善运动觉运动图像检测

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Kinesthetic motor imagery (KMI) tasks induce brain oscillations over specific regions of the primary motor cortex within the contralateral hemisphere of the body part involved in the process. This activity can be measured through the analysis of electroencephalographic (EEG) recordings and is particularly interesting for Brain-Computer Interface (BCI) applications. The most common approach for classification consists of analyzing the signal during the course of the motor task within a frequency range including the alpha band, which attempts to detect the Event-Related Desynchronization (ERD) characteristics of the physiological phenomenon. However, to discriminate right-hand KMI and left-hand KMI, this scheme can lead to poor results on subjects for which the lateralization is not significant enough. To solve this problem, we propose that the signal be analyzed at the end of the motor imagery within a higher frequency range, which contains the Event-Related Synchronization (ERS). This study found that 6 out of 15 subjects have a higher classification rate after the KMI than during the KMI, due to a higher lateralization during this period. Thus, for this population we can obtain a significant improvement of 13% in classification taking into account the users lateralization profile.
机译:动觉运动成像(KMI)任务在参与该过程的身体部位的对侧半球内的主运动皮层的特定区域上引起大脑振荡。可以通过脑电图(EEG)记录的分析来测量此活动,这对于脑机接口(BCI)应用而言尤其有趣。最常见的分类方法包括在运动任务过程中在包括alpha频段在内的频率范围内分析信号,以尝试检测生理现象的事件相关去同步(ERD)特性。但是,若要区分右手KMI和左手KMI,此方案可能会导致在偏侧化不够显着的对象上获得较差的结果。为了解决此问题,我们建议在较高频率范围内的运动图像末尾分析信号,其中包含事件相关同步(ERS)。这项研究发现,在15个受试者中,有6个受试者的KMI分类率高于KMI,这是由于在此期间较高的侧卧感。因此,考虑到用户的偏侧情况,对于该人群,我们可以在分类上获得13%的显着改善。

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