Kelly Simon P, Lalor Edmund C, Finucane Ciarán, McDarby Gary, Reilly Richard B
Department of Electronic & Electrical Engineering, University College Dublin, Belfield Dublin 4, Ireland.
IEEE Trans Biomed Eng. 2005 Sep;52(9):1588-96. doi: 10.1109/TBME.2005.851510.
This paper presents a novel brain computer interface (BCI) design employing visual evoked potential (VEP) modulations in a paradigm involving no dependency on peripheral muscles or nerves. The system utilizes electrophysiological correlates of visual spatial attention mechanisms, the self-regulation of which is naturally developed through continuous application in everyday life. An interface involving real-time biofeedback is described, demonstrating reduced training time in comparison to existing BCIs based on self-regulation paradigms. Subjects were cued to covertly attend to a sequence of letters superimposed on a flicker stimulus in one visual field while ignoring a similar stimulus of a different flicker frequency in the opposite visual field. Classification of left/right spatial attention is achieved by extracting steady-state visual evoked potentials (SSVEPs) elicited by the stimuli. Six out of eleven physically and neurologically healthy subjects demonstrate reliable control in binary decision-making, achieving at least 75% correct selections in at least one of only five sessions, each of approximately 12-min duration. The highest-performing subject achieved over 90% correct selections in each of four sessions. This independent BCI may provide a new method of real-time interaction for those with little or no peripheral control, with the added advantage of requiring only brief training.
本文提出了一种新型脑机接口(BCI)设计,该设计在一种不依赖外周肌肉或神经的范式中采用视觉诱发电位(VEP)调制。该系统利用视觉空间注意机制的电生理相关性,其自我调节通过在日常生活中的持续应用自然发展而来。描述了一种涉及实时生物反馈的接口,与基于自我调节范式的现有BCI相比,其训练时间有所减少。受试者被提示在一个视野中暗中关注叠加在闪烁刺激上的一系列字母,同时忽略相反视野中具有不同闪烁频率的类似刺激。通过提取由刺激引发的稳态视觉诱发电位(SSVEP)来实现左右空间注意的分类。在11名身体和神经健康的受试者中,有6名在二元决策中表现出可靠的控制,在仅有的五个约12分钟时长的会话中的至少一个会话中实现了至少75%的正确选择。表现最佳的受试者在四个会话中的每个会话中都实现了超过90%的正确选择。这种独立的BCI可能为几乎没有或完全没有外周控制能力的人提供一种新的实时交互方法,并且具有只需要简短训练的额外优势。