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Subject-Specific Methodology in the Frequency Scanning Phase of SSVEP-Based BCI

机译:基于SSVEP的BCI的频率扫描阶段的主题特定方法

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Steady State Visual Evoked Potentials (SSVEPs) often used in Brain Computer Interfaces (BCIs) differ across subjects. That is why a new SSVEP-based BCI user should always start the session from the frequency scanning phase. During this phase the stimulation frequencies evoking the most prominent SSVEPs are determined. In our opinion not only the stimulation frequencies specific for the given user should be chosen in the scanning phase but also the methodology used for SSVEP detection. The paper reports the results of a survey whose aim was to find out whether using subject specific methodology for identifying stimulation frequencies would increase the number of frequencies found. We analyzed three factors: length of time window used for power spectrum calculation, combination of channels, and number of harmonics used for SSVEP detection. According to the outcome of the experiment (performed with 6 subjects) the mean drop in the number of SSVEPs detected with any other but the best combination of factors was very large for all subjects (from 31.52 % for subject S3 to 51.76 % for subject S4).
机译:常常用于大脑电脑接口(BCIS)的稳态视觉诱发电位(SSVEPS)在受试者中不同。这就是为什么基于新的SSVEP的BCI用户应该始终从频率扫描阶段开始会话。在此阶段期间,确定唤起最突出的SSVEPS的刺激频率。在我们看来,不仅应该在扫描阶段中选择对给定用户特异的刺激频率,而且应该选择用于SSVEP检测的方法。本文报告了调查结果,其目的是找出用于识别刺激频率的特定方法是否会增加发现的频率的数量。我们分析了三个因素:用于功率谱计算的时间窗口长度,通道组合和用于SSVEP检测的谐波数。根据实验的结果(用6个受试者进行),用任何其他物理检测到的SSVEPS数量的平均下降,但由于对象S4的受试者的最佳因素的最佳组合是非常大的(从受试者S3的31.52%到51.76%) )。

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