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基于脑机接口的二维光标控制的混合特征目标选择。

Target selection with hybrid feature for BCI-based 2-D cursor control.

机构信息

School of Automation Science and Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

IEEE Trans Biomed Eng. 2012 Jan;59(1):132-40. doi: 10.1109/TBME.2011.2167718. Epub 2011 Sep 15.

Abstract

To control a cursor on a monitor screen, a user generally needs to perform two tasks sequentially. The first task is to move the cursor to a target on the monitor screen (termed a 2-D cursor movement), and the second task is either to select a target of interest by clicking on it or to reject a target that is not of interest by not clicking on it. In a previous study, we implemented the former function in an EEG-based brain-computer interface system using motor imagery and the P300 potential to control the horizontal and vertical cursor movements, respectively. In this study, the target selection or rejection functionality is implemented using a hybrid feature from motor imagery and the P300 potential. Specifically, to select the target of interest, the user must focus his or her attention on a flashing button to evoke the P300 potential, while simultaneously maintaining an idle state of motor imagery. Otherwise, the user performs left-/right-hand motor imagery without paying attention to any buttons to reject the target. Our data analysis and online experimental results validate the effectiveness of our approach. The proposed hybrid feature is shown to be more effective than the use of either the motor imagery feature or the P300 feature alone. Eleven subjects attended our online experiment, in which a trial involved sequential 2-D cursor movement and target selection. The average duration of each trial and average accuracy of target selection were 18.19 s and 93.99% , respectively, and each target selection or rejection event was performed within 2 s.

摘要

要在显示器屏幕上控制光标,用户通常需要顺序执行两个任务。第一个任务是将光标移动到显示器屏幕上的目标位置(称为 2-D 光标移动),第二个任务是通过点击目标来选择感兴趣的目标,或者通过不点击目标来拒绝不感兴趣的目标。在之前的研究中,我们使用基于脑电图的脑机接口系统,通过运动想象和 P300 电位分别实现了前一个功能,来控制水平和垂直光标移动。在这项研究中,目标选择或拒绝功能是使用运动想象和 P300 电位的混合特征来实现的。具体来说,要选择感兴趣的目标,用户必须集中注意力在闪烁的按钮上,以唤起 P300 电位,同时保持运动想象的空闲状态。否则,用户执行左手/右手运动想象,而不关注任何按钮,以拒绝目标。我们的数据分析和在线实验结果验证了我们方法的有效性。与单独使用运动想象特征或 P300 特征相比,所提出的混合特征更有效。11 名受试者参加了我们的在线实验,其中一次试验涉及顺序 2-D 光标移动和目标选择。每个试验的平均持续时间和目标选择的平均准确率分别为 18.19 秒和 93.99%,每个目标选择或拒绝事件都在 2 秒内完成。

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