McCrimmon Colin M, Silva Lopes Lucas, Wang Po T, Karimi-Bidhendi Alireza, Liu Charles Y, Heydari Payam, Nenadic Zoran, Do An H
Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:2776-2779. doi: 10.1109/EMBC.2016.7591306.
Motor rehabilitation using brain-computer interface (BCI) systems may facilitate functional recovery in individuals after stroke or spinal cord injury. Nevertheless, these systems are typically ill-suited for widespread adoption due to their size, cost, and complexity. In this paper, a small, portable, and extremely cost-efficient (<;$200) BCI system has been developed using a custom electroencephalographic (EEG) amplifier array, and a commercial microcontroller and touchscreen. The system's performance was tested using a movement-related BCI task in 3 able-bodied subjects with minimal previous BCI experience. Specifically, subjects were instructed to alternate between relaxing and dorsiflexing their right foot, while their EEG was acquired and analyzed in real-time by the BCI system to decode their underlying movement state. The EEG signals acquired by the custom amplifier array were similar to those acquired by a commercial amplifier (maximum correlation coefficient ρ=0.85). During real-time BCI operation, the average correlation between instructional cues and decoded BCI states across all subjects (ρ=0.70) was comparable to that of full-size BCI systems. Small, portable, and inexpensive BCI systems such as the one reported here may promote a widespread adoption of BCI-based movement rehabilitation devices in stroke and spinal cord injury populations.
使用脑机接口(BCI)系统进行运动康复可能有助于中风或脊髓损伤患者的功能恢复。然而,由于其尺寸、成本和复杂性,这些系统通常不太适合广泛应用。在本文中,利用定制的脑电图(EEG)放大器阵列、商用微控制器和触摸屏,开发了一种小型、便携式且成本极低(<200美元)的BCI系统。该系统的性能在3名之前几乎没有BCI经验的健康受试者身上,通过与运动相关的BCI任务进行了测试。具体而言,受试者被要求在放松和右足背屈之间交替,同时BCI系统实时采集并分析他们的脑电图,以解码其潜在的运动状态。定制放大器阵列采集的脑电图信号与商用放大器采集的信号相似(最大相关系数ρ=0.85)。在实时BCI操作期间,所有受试者的指令线索与解码后的BCI状态之间的平均相关性(ρ=0.70)与全尺寸BCI系统相当。本文报道的这种小型、便携式且价格低廉的BCI系统可能会促进基于BCI的运动康复设备在中风和脊髓损伤人群中的广泛应用。