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首页> 外文期刊>Journal of Neuroscience Methods >Development of an SSVEP-based BCI spelling system adopting a QWERTY-style LED keyboard
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Development of an SSVEP-based BCI spelling system adopting a QWERTY-style LED keyboard

机译:使用QWERTY样式的LED键盘开发基于SSVEP的BCI拼写系统

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In this study, we introduce a new mental spelling system based on steady-state visual evoked potential (SSVEP), adopting a QWERTY style layout keyboard with 30 LEDs flickering with different frequencies. The proposed electroencephalography (EEG)-based mental spelling system allows the users to spell one target character per each target selection, without the need for multiple step selections adopted by conventional SSVEP-based mental spelling systems. Through preliminary offline experiments and online experiments, we confirmed that human SSVEPs elicited by visual flickering stimuli with a frequency resolution of 0.1. Hz could be classified with classification accuracy high enough to be used for a practical brain-computer interface (BCI) system. During the preliminary offline experiments performed with five participants, we optimized various factors influencing the performance of the mental spelling system, such as distances between adjacent keys, light source arrangements, stimulating frequencies, recording electrodes, and visual angles. Additional online experiments were conducted with six participants to verify the feasibility of the optimized mental spelling system. The results of the online experiments were an average typing speed of 9.39 letters per minute (LPM) with an average success rate of 87.58%, corresponding to an average information transfer rate of 40.72 bits per minute, demonstrating the high performance of the developed mental spelling system. Indeed, the average typing speed of 9.39 LPM attained in this study was one of the best LPM results among those reported in previous BCI literatures.
机译:在这项研究中,我们介绍了一种基于稳态视觉诱发电位(SSVEP)的新型心理拼写系统,采用了QWERTY样式的布局键盘,该键盘具有30个以不同频率闪烁的LED。所提出的基于脑电图(EEG)的心理拼写系统允许用户为每个目标选择拼写一个目标字符,而无需常规基于SSVEP的心理拼写系统采用的多步选择。通过初步的离线实验和在线实验,我们证实了人的SSVEPs是由频率分辨率为0.1的视觉闪烁刺激引起的。 Hz可以以足够高的分类精度进行分类,以用于实际的脑机接口(BCI)系统。在与五名参与者进行的初步离线实验中,我们优化了影响心理拼写系统性能的各种因素,例如相邻按键之间的距离,光源布置,刺激频率,记录电极和视角。与六名参与者进行了另外的在线实验,以验证优化的心理拼写系统的可行性。在线实验的结果是平均打字速度为每分钟9.39个字母(LPM),平均成功率为87.58%,对应于平均信息传输率为每分钟40.72位,这证明了发达的智力拼写的高性能系统。确实,这项研究中获得的平均打字速度为9.39 LPM,是先前BCI文献中报道的最佳LPM结果之一。

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