multiple frequencies sequential coding for ssvep-based brain-computer interface多个频率顺序编码ssvep-based脑机接口.pdfVIP

multiple frequencies sequential coding for ssvep-based brain-computer interface多个频率顺序编码ssvep-based脑机接口.pdf

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multiple frequencies sequential coding for ssvep-based brain-computer interface多个频率顺序编码ssvep-based脑机接口

Multiple Frequencies Sequential Coding for SSVEP-Based Brain-Computer Interface Yangsong Zhang, Peng Xu*, Tiejun Liu, Jun Hu, Rui Zhang, Dezhong Yao* Key Laboratory for NeuroInformation of Ministry of Education, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China Abstract Background: Steady-state visual evoked potential (SSVEP)-based brain-computer interface (BCI) has become one of the most promising modalities for a practical noninvasive BCI system. Owing to both the limitation of refresh rate of liquid crystal display (LCD) or cathode ray tube (CRT) monitor, and the specific physiological response property that only a very small number of stimuli at certain frequencies could evoke strong SSVEPs, the available frequencies for SSVEP stimuli are limited. Therefore, it may not be enough to code multiple targets with the traditional frequencies coding protocols, which poses a big challenge for the design of a practical SSVEP-based BCI. This study aimed to provide an innovative coding method to tackle this problem. Methodology/Principal Findings: In this study, we present a novel protocol termed multiple frequencies sequential coding (MFSC) for SSVEP-based BCI. In MFSC, multiple frequencies are sequentially used in each cycle to code the targets. To fulfill the sequential coding, each cycle is divided into several coding epochs, and during each epoch, certain frequency is used. Obviously, different frequencies or the same frequency can be presented in the coding epochs, and the different epoch sequence corresponds to the different targets. To show the feasibility of MFSC, we used two frequencies to realize four targets and carried on an offline experiment. The current study shows that: 1) MFSC is feasible and efficient; 2) the performance of SSVEP-bas

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