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A new SSVEP based BCI application on the mobile robot in a maze game

机译:一个新的SSVEP基于Maze Game的移动机器人的BCI应用程序

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In order to promote the quality of life for the subjects with motor neuron disease, an interesting maze game operated by steady state visual evoked potential (SSVEP) based brain-computer Interface (BCI) was developed. The SSVEP based BCI provides 4 options including: "counterclockwise", "clockwise" "forward" and "backward". A liquid crystal display (LCD) monitor is used as the visual stimulation device showing 4 option icons flickering at different frequencies respectively to induce subject's brain waves. Then the visual evoked potential signals of the subject can be acquired and pre-processed. The corresponding electroencephalogram (EEG) features are also extracted and identified in the decision model. According to the output results of decision model, the subject can control the mobile robot to move forward, backward or turn around. Ten subjects were asked to participate in the related experiments to evaluate the proposed EEG analysis method in the SSVEP based BCI system. The experimental results showed that the average accuracy of the SSVEP based BCI for controlling the mobile robot is above 83%. The result showed that the proposed SSVEP based BCI control is able to help the subjects with motor neuron disease enjoy the maze game entertainment.
机译:为了促进患有运动神经元疾病的受试者的生活质量,开发了一种由稳态视觉诱发电位(SSVEP)基于脑电电脑界面(BCI)操作的有趣迷宫游戏。基于SSVEP的BCI提供了4个选项,包括:“逆时针方向”,“顺时针”“向前”和“向后”。液晶显示器(LCD)监视器用作显示在不同频率下闪烁的4个选项图标的视觉刺激装置,以诱导受试者的脑波。然后可以获得和预处理对象的视觉诱发电位信号。还在决策模型中提取并识别相应的脑电图(EEG)特征。根据决策模型的输出结果,主题可以控制移动机器人向前移动,向后或转身。要求十个受试者参与相关实验,以评估基于SSVEP的BCI系统中提出的脑电图分析方法。实验结果表明,用于控制移动机器人的SSVEP的BCI的平均精度高于83%。结果表明,所提出的基于SSVEP的BCI控制能够帮助电机神经元疾病的受试者享受迷宫游戏娱乐。

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