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Development of a BCI master switch based on single-trial detection of contingent negative variation related potentials

机译:基于偶然性负变化相关电位的单次检测的BCI主开关的开发

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To control the startup/shutdown of a conventional brain-computer interface (BCI) that is always running for daily use, we proposed and developed a new BCI system called a BCI master switch. We designed it with on/off switching functions by detecting the contingent negative variation (CNV) — related potentials. We chose CNV to improve the single-trial discrimination of user intentions to switch because CNV had a high signal-to-noise ratio and needed high concentration for its elicitation. We also applied a support vector machine (SVM) to improve the single-trial detection of CNV-related potentials. As the best parameters of SVM were estimated and applied, the offline evaluation's best performance achieved a CNV detection rate of 99.3% for the intention to switch and 2.1% for the intention not to switch. Remarkably, this performance was achieved from single-trial detection, imaginary response of user's intention without physical reaction, and the data from only one recording electrode. These results suggest that our proposed BCI system might work as a master switch by single-trial detection.
机译:为了控制始终每天运行的常规脑机接口(BCI)的启动/关闭,我们提出并开发了一种新的BCI系统,称为BCI主开关。我们通过检测或有负变化(CNV)-相关电势,设计了具有开/关切换功能的设备。我们选择CNV来改善用户意图切换的一次尝试,因为CNV具有高信噪比并且需要高浓度来激发。我们还应用了支持向量机(SVM)来改善CNV相关电位的单次试验检测。通过估计和应用SVM的最佳参数,脱机评估的最佳性能实现了有意切换的CNV检测率为99.3%,无意切换的CNV检测率为2.1%。值得注意的是,这种性能是通过单次试验检测,用户意图的假想响应而没有物理反应,以及仅来自一个记录电极的数据来实现的。这些结果表明,我们提出的BCI系统可以通过单次试验检测作为主交换机。

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