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Asynchronous Brain–Computer Interface Based on Steady-State Visual-Evoked Potential

机译:基于稳态视觉诱发电位的异步脑机接口

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Asynchronous brain–computer interface (BCI) systems are more practicable than synchronous ones in real-world applications. A key challenge in asynchronous BCI design is to discriminate intentional control (IC) and non-intentional control (NC) states. In this paper, we present a two-stage asynchronous protocol for a steady-state visual-evoked potential-based BCI. First, we estimate a threshold using canonical correlation analysis coefficients in synchronous mode; then, we combine it with a sliding window strategy to continuously detect the mental state of the user. If the current state is judged as an IC state, then the system will output command. Our results show that the average positive predictive value of the system is 77.06  % and that its average false-positive rate in the NC state and IC state are 2.37 and 12.05 %, respectively.
机译:在实际应用中,异步脑-计算机接口(BCI)系统比同步系统更实用。异步BCI设计中的一个关键挑战是区分意图控制(IC)和非意图控制(NC)状态。在本文中,我们为稳态视觉诱发电位基于BCI提出了两阶段异步协议。首先,我们在同步模式下使用规范相关分析系数估计阈值;然后,我们将其与滑动窗口策略结合起来,以不断检测用户的心理状态。如果当前状态被判断为IC状态,则系统将输出命令。我们的结果表明,该系统的平均阳性预测值为77.06%,其在NC状态和IC状态下的平均假阳性率分别为2.37%和12.05%。

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