A hybrid brain-computer interface control strategy in a virtual environment

被引:0
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作者
Yu Su
Yu Qi
Jian-xun Luo
Bian Wu
Fan Yang
Yi Li
Yue-ting Zhuang
Xiao-xiang Zheng
Wei-dong Chen
机构
[1] Zhejiang University,Qiushi Academy for Advanced Studies
[2] Zhejiang University,School of Computer Science and Technology
[3] Zhejiang University,Department of Biomedical Engineering
[4] Key Laboratory of Biomedical Engineering of the Ministry of Education,undefined
关键词
Hybrid brain-computer interface (BCI) control strategy; P300 potential; Sensorimotor rhythms; Virtual environment; TP399; R318;
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摘要
This paper presents a hybrid brain-computer interface (BCI) control strategy, the goal of which is to expand control functions of a conventional motor imagery or a P300 potential based BCI in a virtual environment. The hybrid control strategy utilizes P300 potential to control virtual devices and motor imagery related sensorimotor rhythms to navigate in the virtual world. The two electroencephalography (EEG) patterns serve as source signals for different control functions in their corresponding system states, and state switch is achieved in a sequential manner. In the current system, imagination of left/right hand movement was translated into turning left/right in the virtual apartment continuously, while P300 potentials were mapped to discrete virtual device control commands using a five-oddball paradigm. The combination of motor imagery and P300 patterns in one BCI system for virtual environment control was tested and the results were compared with those of a single motor imagery or P300-based BCI. Subjects obtained similar performances in the hybrid and single control tasks, which indicates the hybrid control strategy works well in the virtual environment.
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