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Feasibility of a Hybrid Brain-Computer Interface for Advanced Functional Electrical Therapy

机译:用于高级功能电气治疗的混合脑电脑界面的可行性

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摘要

We present a feasibility study of a novel hybrid brain-computer interface (BCI) system for advanced functional electrical therapy (FET) of grasp. FET procedure is improved with both automated stimulation pattern selection and stimulation triggering. The proposed hybrid BCI comprises the two BCI control signals: steady-state visual evoked potentials (SSVEP) and event-related desynchronization (ERD). The sequence of the two stages, SSVEP-BCI and ERD-BCI, runs in a closed-loop architecture. The first stage, SSVEP-BCI, acts as a selector of electrical stimulation pattern that corresponds to one of the three basic types of grasp: palmar, lateral, or precision. In the second stage, ERD-BCI operates as a brain switch which activates the stimulation pattern selected in the previous stage. The system was tested in 6 healthy subjects who were all able to control the device with accuracy in a range of 0.64–0.96. The results provided the reference data needed for the planned clinical study. This novel BCI may promote further restoration of the impaired motor function by closing the loop between the “will to move” and contingent temporally synchronized sensory feedback.
机译:我们提出了一种用于掌握先进功能电气疗法(FET)的新型混合脑电脑界面(BCI)系统的可行性研究。通过自动刺激模式选择和刺激触发,改善了FET程序。所提出的混合BCI包括两个BCI控制信号:稳态视觉诱发电位(SSVEP)和与事件相关的des同步(ERD)。两个阶段,SSVEP-BCI和ERD-BCI的序列在闭环架构中运行。第一阶段SSVEP-BCI,充当电刺激模式的选择器,其对应于三种基本类型的掌握之一:Palmar,横向或精度。在第二阶段,ERD-BCI作为脑开关操作,其激活前一级中选择的刺激模式。该系统在6个健康的受试者中进行了测试,他们都能够以0.64-0.96的精度控制设备。结果提供了计划临床研究所需的参考数据。这种新颖的BCI可以通过关闭“将移动”和偶然的时间同步的感官反馈之间的环路来促进进一步恢复受损的电机功能。

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