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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >An EEG-Based BCI System for 2-D Cursor Control by Combining Mu/Beta Rhythm and P300 Potential
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An EEG-Based BCI System for 2-D Cursor Control by Combining Mu/Beta Rhythm and P300 Potential

机译:结合Mu / Beta节律和P300电位的基于EEG的二维光标控制BCI系统

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Two-dimensional cursor control is an important and challenging issue in EEG-based brain–computer interfaces (BCIs). To address this issue, here we propose a new approach by combining two brain signals including Mu/Beta rhythm during motor imagery and P300 potential. In particular, a motor imagery detection mechanism and a P300 potential detection mechanism are devised and integrated such that the user is able to use the two signals to control, respectively, simultaneously, and independently, the horizontal and the vertical movements of the cursor in a specially designed graphic user interface. A real-time BCI system based on this approach is implemented and evaluated through an online experiment involving six subjects performing 2-D control tasks. The results attest to the efficacy of obtaining two independent control signals by the proposed approach. Furthermore, the results show that the system has merit compared with prior systems: it allows cursor movement between arbitrary positions.
机译:在基于EEG的脑机接口(BCI)中,二维光标控制是一个重要且具有挑战性的问题。为了解决这个问题,在这里我们提出了一种新方法,通过组合两个大脑信号,包括运动成像期间的Mu / Beta节律和P300电位。尤其是,设计并集成了运动图像检测机制和P300电位检测机制,以便用户能够使用这两个信号分别,同时和独立地控制光标在屏幕上的水平和垂直移动。专门设计的图形用户界面。通过在线实验来实施和评估基于此方法的实时BCI系统,该在线实验涉及执行2-D控制任务的六个对象。结果证明了所提出的方法获得两个独立控制信号的功效。此外,结果表明该系统与现有系统相比具有优点:它允许光标在任意位置之间移动。

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