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Using an EEG-Based Brain-Computer Interface for Virtual Cursor Movement with BCI2000

机译:使用基于脑电图的脑机接口与BCI2000进行虚拟光标移动

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摘要

A brain-computer interface (BCI) functions by translating a neural signal, such as the electroencephalogram (EEG), into a signal that can be used to control a computer or other device. The amplitude of the EEG signals in selected frequency bins are measured and translated into a device command, in this case the horizontal and vertical velocity of a computer cursor. First, the EEG electrodes are applied to the user s scalp using a cap to record brain activity. Next, a calibration procedure is used to find the EEG electrodes and features that the user will learn to voluntarily modulate to use the BCI. In humans, the power in the mu (8-12 Hz) and beta (18-28 Hz) frequency bands decrease in amplitude during a real or imagined movement. These changes can be detected in the EEG in real-time, and used to control a BCI ([1],[2]). Therefore, during a screening test, the user is asked to make several different imagined movements with their hands and feet to determine the unique EEG features that change with the imagined movements. The results from this calibration will show the best channels to use, which are configured so that amplitude changes in the mu and beta frequency bands move the cursor either horizontally or vertically. In this experiment, the general purpose BCI system BCI2000 is used to control signal acquisition, signal processing, and feedback to the user [3].
机译:脑机接口(BCI)通过将诸如脑电图(EEG)之类的神经信号转换为可用于控制计算机或其他设备的信号来发挥作用。测量所选频率仓中的EEG信号的幅度,并将其转换为设备命令,在这种情况下为计算机光标的水平和垂直速度。首先,使用帽子将EEG电极施加到使用者的头皮上,以记录其大脑活动。接下来,使用校准程序来查找用户将学会自动调制以使用BCI的EEG电极和特征。在人类中,mu(8-12 Hz)和beta(18-28 Hz)频带中的功率会在实际或想象的运动中幅度减小。这些变化可以在EEG中实时检测到,并用于控制BCI([1],[2])。因此,在筛选测试期间,要求用户用他们的手和脚进行几种不同的想象的动作,以确定随想象的动作而变化的独特的EEG特征。校准的结果将显示最佳使用通道,这些通道经过配置,以使mu和beta频带中的幅度变化可以水平或垂直移动光标。在本实验中,通用BCI系统BCI2000用于控制信号采集,信号处理和反馈给用户[3]。

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