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首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >A Hybrid Brain–Computer Interface Based on the Fusion of P300 and SSVEP Scores
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A Hybrid Brain–Computer Interface Based on the Fusion of P300 and SSVEP Scores

机译:基于P300和SSVEP分数融合的混合脑机接口

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摘要

The present study proposes a hybrid brain–computer interface (BCI) with 64 selectable items based on the fusion of P300 and steady-state visually evoked potential (SSVEP) brain signals. With this approach, row/column (RC) P300 and two-step SSVEP paradigms were integrated to create two hybrid paradigms, which we denote as the double RC (DRC) and 4-D spellers. In each hybrid paradigm, the target is simultaneously detected based on both P300 and SSVEP potentials as measured by the electroencephalogram. We further proposed a maximum-probability estimation (MPE) fusion approach to combine the P300 and SSVEP on a score level and compared this approach to other approaches based on linear discriminant analysis, a naïve Bayes classifier, and support vector machines. The experimental results obtained from thirteen participants indicated that the 4-D hybrid paradigm outperformed the DRC paradigm and that the MPE fusion achieved higher accuracy compared with the other approaches. Importantly, 12 of the 13 participants, using the 4-D paradigm achieved an accuracy of over 90% and the average accuracy was 95.18%. These promising results suggest that the proposed hybrid BCI system could be used in the design of a high-performance BCI-based keyboard.
机译:本研究基于P300和稳态视觉诱发电位(SSVEP)脑信号的融合,提出了具有64个可选项目的混合脑机接口(BCI)。通过这种方法,行/列(RC)P300和两步SSVEP范例被集成以创建两个混合范例,我们将其称为双RC(DRC)和4-D拼写器。在每个混合范例中,都会根据脑电图测量的P300和SSVEP电位同时检测目标。我们进一步提出了一种最大概率估计(MPE)融合方法,将P300和SSVEP在得分级别上进行组合,并将该方法与基于线性判别分析,朴素贝叶斯分类器和支持向量机的其他方法进行了比较。从13位参与者获得的实验结果表明,4-D混合范例优于DRC范例,并且MPE融合与其他方法相比具有更高的准确性。重要的是,使用4-D范例的13位参与者中有12位达到了90%以上的准确度,平均准确度为95.18%。这些有希望的结果表明,所提出的混合BCI系统可用于设计基于BCI的高性能键盘。

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