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首页> 外文期刊>Journal of medical systems >Development of a Wearable Motor-Imagery-Based Brain-Computer Interface
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Development of a Wearable Motor-Imagery-Based Brain-Computer Interface

机译:基于可穿戴运动图像的脑机接口的开发

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A motor-imagery-based brain-computer interface (BCI) is a translator that converts the motor intention of the brain into a control command to control external machines without muscles. Numerous motor-imagery-based BCIs have been successfully proposed in previous studies. However, several electroencephalogram (EEG) channels are typically required for providing sufficient information to maintain a specific accuracy and bit rate, and the bulk volume of these EEG machines is also inconvenient. A wearable motor imagery-based BCI system was proposed and implemented in this study. A wearable mechanical design with novel active comb-shaped dry electrodes was developed to measure EEG signals without conductive gels at hair sites, which is easy and convenient for users wearing the EEG machine. In addition, a wireless EEG acquisition module was also designed to measure EEG signals, which provides a user with more freedom of motion. The proposed wearable motor-imagery-based BCI system was validated using an electrical specifications test and a hand motor imagery experiment. Experimental results showed that the proposed wearable motor-imagery-based BCI system provides favorable signal quality for measuring EEG signals and detecting motor imagery.
机译:基于运动图像的脑机接口(BCI)是一种转换器,可将大脑的运动意图转换为控制命令,以控制没有肌肉的外部机器。在先前的研究中已经成功地提出了许多基于运动图像的BCI。但是,通常需要几个脑电图(EEG)通道以提供足够的信息来维持特定的准确性和比特率,并且这些EEG机器的体积也不方便。本研究提出并实施了基于可穿戴运动图像的BCI系统。开发了一种具有新型有源梳状干电极的可穿戴机械设计,可在头发部位不使用导电凝胶的情况下测量EEG信号,这对于佩戴EEG机的用户来说非常方便。此外,还设计了无线EEG采集模块以测量EEG信号,从而为用户提供了更大的运动自由度。拟议的可穿戴基于电机图像的BCI系统已通过电气规格测试和手动电机图像实验进行了验证。实验结果表明,所提出的可穿戴的基于运动图像的BCI系统为测量脑电信号和检测运动图像提供了良好的信号质量。

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