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Online detection of error-related potentials in multi-class cognitive task-based BCIs

机译:在线检测基于多类认知任务的BCI中与错误相关的电位

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One method for improving the accuracy and hence the rate of communication of a brain-computer interface (BCI) is to automatically correct erroneous classifications by exploiting error-related potentials (ErrPs). The merit of such a correction scheme has been demonstrated in both active (e.g. motor imagery) and reactive (e.g. P300) BCIs. Here, we investigated the effect of ErrP-guided error correction in a three-class, active BCI based on cognitive rather than motor imagery tasks using electroencephalography (EEG). Ten able-bodied adults participated in three sessions of data collection. For each participant, a ternary BCI differentiated among idle state and two personally selected cognitive tasks (e.g. mental arithmetic, counting, word generation, and figure rotation). Real-time feedback of the BCI decision was displayed to the participant following each task. EEG data after feedback onset were used to detect ErrPs and correct the BCI's output in the case of detected errors. ErrP-based error correction modestly but significantly improved the average online task classification accuracy (+7%) as well as the information transfer rate (+0.9 bits/min) of the ternary BCI across participants. Our findings support further study of ErrPs in active BCIs based on cognitive tasks.
机译:一种提高准确性并因此提高脑机接口(BCI)的通信速率的方法是通过利用与错误相关的电势(ErrP)自动校正错误的分类。这种校正方案的优点已在主动式(例如,汽车图像)和反应式(例如,P300)BCI中得到了证明。在这里,我们研究了基于认知而不是使用脑电图(EEG)进行运动成像任务的三类主动BCI中ErrP引导的纠错的效果。十名身体健全的成年人参加了三届数据收集会议。对于每个参与者,三元BCI在空闲状态和两个个人选择的认知任务(例如心理算术,计数,单词生成和图形旋转)之间进行区分。在每个任务之后,将BCI决策的实时反馈显示给参与者。反馈开始后的EEG数据用于检测ErrP,并在检测到错误的情况下纠正BCI的输出。基于ErrP的错误校正适度,但显着提高了参与者之间的平均在线任务分类准确性(+ 7%)以及三元BCI的信息传输速率(+0.9位/分钟)。我们的发现支持基于认知任务的活动BCI中ErrPs的进一步研究。

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