Comparison of Visual Cortex Functional Connectivity Patterns Based on Steady-state Monochromatic Flicker and Oscillating Checkerboard Visual Stimulus

Xingliang Han, Jun Xie, Ailing Luo, Guanghua Xu, Xiaodong Zhang, Jing Wang, Min Li
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引用次数: 2

Abstract

Steady-state visual evoked potential (SSVEP) and steady-state motion visual evoked potential (SSMVEP) are commonly implemented in brain computer interfaces (BCIs). The primary visual system is believed to consist of two pathways: a ventral pathway involved with conscious perception and a dorsal pathway for moving visual information processing. In this paper, as monochromatic flicker and oscillating checkerboard served as distinct stimuli for the elicit of SSVEP and SSMVEP respectively, we investigated functional connectivity patterns of SSVEP and SSMVEP by applying directed transfer function (DTF) to electroencephalography (EEG) signals. The value of flow gain, which is defined as the ratio of outflow to inflow of information flows in one channel, was used to measure the activating level of specific brain region in the information transmission process. We found that the occipital region was strongly activated by flicker stimulation whereas the strongest response of oscillating checkerboard was in the middle temporal visual region. Owing to the difference of activating area, fourteen-channel canonical correlation analysis (CCA) was also applied to compare the recognition accuracy. Results indicated that, due to the wider area activated by oscillating checkerboard, it achieved a higher recognition performance with short response time when compared to monochromatic flicker.
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基于稳态单色闪烁和振荡棋盘视觉刺激的视皮层功能连接模式比较
稳态视觉诱发电位(SSVEP)和稳态运动视觉诱发电位(SSMVEP)是脑机接口(bci)中常用的实现方法。初级视觉系统被认为由两条通路组成:一条涉及意识感知的腹侧通路和一条用于移动视觉信息处理的背侧通路。本文以单色闪烁和振荡棋盘分别作为SSVEP和SSMVEP诱发的不同刺激,采用有向传递函数(DTF)分析脑电图信号,研究SSVEP和SSMVEP的功能连接模式。流量增益的值被定义为一个通道中信息流流出与流入的比值,用来衡量信息传递过程中大脑特定区域的激活水平。我们发现,闪烁刺激强烈激活枕区,而振荡棋盘反应最强烈的是颞叶中部视觉区。由于激活区不同,采用十四通道典型相关分析(CCA)对识别准确率进行比较。结果表明,与单色闪烁相比,由于振荡棋盘格激活的区域更广,在较短的响应时间内获得了更高的识别性能。
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