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EarEEG based visual P300 Brain-Computer Interface

机译:基于EAREEG的Visual P300脑电脑界面

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The translation of non-invasive Brain-Computer Interfaces (BCI) from the only possible communication pathway for paralyzed patients into more widespread applications is limited by: the lack of effective, user-friendly and robust paradigms, low information transfer rates (ITR), and lack of suitable electroencephalography (EEG) recording platforms. This study addresses the last point by exploring the extent to which the recently introduced EarEEG technology, which provides an unobtrusive, discreet and user-friendly way of recording EEG, can be used in BCI applications. This was approached by comparing conventional on-scalp EEG and EarEEG recordings in a well-established visual P300 BCI setup. The two recording methods were compared qualitatively by comparing Event-Related Potential (ERP) waveforms, and quantitatively in terms of P300 signal-to-noise ratios (SNR) and ITRs of the BCI paradigm. The study showed similar ERP waveforms and on par P300 SNRs from both on-scalp and ear electrodes, and only a 6.5% decrease in single channel ITR for ear electrodes compared to on-scalp electrodes. This demonstrates that the EarEEG platform is a feasible technology for P300-based BCIs.
机译:非侵入性大脑 - 计算机接口(BCI)的翻译从瘫痪的患者唯一可能进入更广泛的应用程序的唯一通信途径受:缺乏有效,用户友好和强大的范式,低信息传输速率(ITR),缺乏合适的脑电图(EEG)记录平台。本研究通过探索最近引入的EALEEG技术的程度来解决最近的一定程度,该技术提供了录音eeg的不引人注目的,谨慎和用户友好方式,可以在BCI应用中使用。通过比较常规的头皮EEG和EALEG录制在良好的Visual P300 BCI设置中来接近这一点。通过比较事件相关的电位(ERP)波形,并且在BCI范例的P300信噪比比(SNR)和ITR方面来定制两个记录方法。该研究显示了与头皮和耳电极的同样类似的ERP波形和P300SNR,并且与头皮电极相比,单通道ITR的单通道ITR的减小仅为6.5%。这表明EAREEG平台是基于P300的BCIS的可行技术。

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