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An SSVEP-Based Brain–Computer Interface for the Control of Functional Electrical Stimulation

机译:基于SSVEP的脑机接口,用于控制功能性电刺激

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摘要

A brain–computer interface (BCI) based on steady-state visual-evoked potentials (SSVEPs) is combined with a functional electrical stimulation (FES) system to allow the user to control stimulation settings and parameters. The system requires four flickering lights of distinct frequencies that are used to form a menu-based interface, enabling the user to interact with the FES system. The approach was evaluated in 12 neurologically intact subjects to change the parameters and operating mode of an abdominal stimulation system for respiratory assistance. No major influence of the FES on the raw EEG signal could be observed. In tests with a self-paced task, a mean accuracy of more than 90% was achieved, with detection times of approximately 7.7 s and an average information transfer rate of 12.5 bits/min. There was no significant dependency of the accuracy or time of detection on the FES stimulation intensity. The results indicate that the system could be used to control FES-based neuroprostheses with a high degree of accuracy and robustness.
机译:基于稳态视觉诱发电位(SSVEP)的脑机接口(BCI)与功能性电刺激(FES)系统相结合,使用户可以控制刺激设置和参数。该系统需要四个频率不同的闪烁灯,用于形成基于菜单的界面,使用户能够与FES系统进行交互。在12位神经学完好的受试者中评估了该方法,以改变用于呼吸辅助的腹部刺激系统的参数和操作模式。没有观察到FES对原始EEG信号的重大影响。在具有自定进度任务的测试中,平均准确率达到90%以上,检测时间约为7.7 s,平均信息传输速率为12.5位/分钟。检测的准确性或时间对FES刺激强度没有显着依赖性。结果表明,该系统可用于以高精度和鲁棒性控制基于FES的神经假体。

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