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The control of a virtual automatic car based on multiple patterns of motor imagery BCI

机译:基于Motor Imagerery BCI多模式的虚拟自动汽车的控制

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摘要

Multiple degrees of freedom (DOF) commands are required for a brain-actuated virtual automatic car, which makes the brain-computer interface (BCI) control strategy a big challenge. In order to solve the challenging issue, a mixed model of BCI combining P300 potentials and motor imagery had been realized in our previous study. However, compared with single model BCI, more training procedures are needed for the mixed model and more mental workload for users to bear. In the present study, we propose a multiple patterns of motor imagery (MPMI) BCI method, which is based on the traditional two patterns of motor imagery. Our motor imagery BCI approach had been extended to multiple patterns: right-hand motor imagery, left-hand motor imagery, foot motor imagery, and both hands motor imagery resulting in turning right, turning left, acceleration, and deceleration for a virtual automatic car control. Ten healthy subjects participated in online experiments, the experimental results not only show the efficiency of our proposed MPMI-BCI strategy but also indicate that those users can control the virtual automatic car spontaneously and efficiently without any other visual attention. Furthermore, the metric of path length optimality ratio (1.23) is very encouraging and the time optimality ratio (1.28) is especially remarkable.t
机译:大脑驱动的虚拟自动汽车需要多项自由(DOF)命令,这使得脑电脑接口(BCI)控制策略成为一个大挑战。为了解决具有挑战性的问题,在我们以前的研究中已经实现了BCI的混合模型组合P300电位和电动机图像。然而,与单一模型BCI相比,混合模型和更多心理工作量需要更多的培训程序。在本研究中,我们提出了一种多种模式的电动机图像(MPMI)BCI方法,其基于传统的电动机图像图案。我们的电机图像BCI方法已经扩展到多种模式:右手电机图像,左手电机图像,脚踏电动机图像,以及双手电机图像导致右转,转动左转,加速和减速为虚拟自动汽车控制。十个健康的科目参与了在线实验,实验结果不仅展示了我们提出的MPMI-BCI策略的效率,还表明这些用户可以自发,有效地控制虚拟自动车,而没有任何其他视觉关注。此外,路径长度最优性比(1.23)的度量非常令人鼓舞,并且时间最优比率(1.28)尤其显着。

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