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Classification of brain hemodynamic signals arising from visual action observation tasks for brain-computer interfaces: A functional near-infrared spectroscopy study

机译:脑机接口视觉动作观察任务产生的脑血流动力学信号分类:功能性近红外光谱研究

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摘要

A brain-computer interface (BCI) is a way of translating an individuals' thoughts to control a computer or an external mechanical device. Studying brain activities in a reproducible manner, this study explores the possibility of using real-time functional-near infrared spectroscopy (fNIRS) to detect brain hemodynamic features for BCI commands. Sixteen channel brain activities associated with two distinct mental tasks were measured from seven healthy subjects. The tasks represented neural activities arising from a visual observation of a motor action related to hand movements of the subjects. Sensitive signatures of task relevant neural activities were further extracted from hemodynamic signals in the prefrontal cortex of the brain, and subsequently were translated into pre-determined computer commands using a set of algorithms. The decoded commands allowed volunteer subjects to control an external device in real-time through their mental intentions. The obtained results demonstrate the potential of the current study as an alternative fNIRSBCI paradigm.
机译:脑机接口(BCI)是一种转换个人思想以控制计算机或外部机械设备的方式。以可重现的方式研究大脑活动,本研究探索了使用实时近红外光谱(fNIRS)检测BCI命令的脑血流动力学特征的可能性。从七个健康受试者中测量了与两个不同的心理任务相关的十六个通道的大脑活动。这些任务代表了由视觉观察与受试者手部运动有关的运动所引起的神经活动。从大脑前额叶皮层的血流动力学信号中进一步提取了与任务相关的神经活动的敏感特征,然后使用一组算法将其翻译为预定的计算机命令。解码后的命令使志愿受试者能够通过其心理意图实时控制外部设备。获得的结果证明了本研究作为替代fNIRSBCI范式的潜力。

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