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用于基于稳态视觉诱发电位的高速脑机接口拼写器的混合频率和相位编码

Hybrid frequency and phase coding for a high-speed SSVEP-based BCI speller.

作者信息

Chen Xiaogang, Wang Yijun, Nakanishi Masaki, Jung Tzyy-Ping, Gao Xiaorong

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:3993-6. doi: 10.1109/EMBC.2014.6944499.

Abstract

Steady-state visual evoked potential (SSVEP)-based brain-computer interfaces (BCIs) have potential to realize high-speed communication between the human brain and the external environment. Recently, multiple access (MA) methods in telecommunications have been introduced into the system design of BCIs and showed their potential in improving BCI performance. This study investigated the feasibility of hybrid frequency and phase coding methods in multi-target SSVEP-based BCIs. Specifically, this study compared two hybrid target-coding strategies: (1) mixed frequency and phase coding, and (2) joint frequency and phase coding. In a simulated online BCI experiment using a 40-target BCI speller, BCI performance for both coding approaches were tested with a group of six subjects. At a spelling speed of 40 characters per minute (1.5 seconds per character), both approaches obtained high information transfer rates (ITR) (mixed coding: 172.37±28.67 bits/min, joint coding: 170.94±28.32 bits/min) across subjects. There was no statistically significant difference between the two approaches (p>0.05). These results suggest that the hybrid frequency and phase coding methods are highly efficient for multi-target coding in SSVEP BCIs with a large number of classes, providing a practical solution to implement a high-speed BCI speller.

摘要

基于稳态视觉诱发电位(SSVEP)的脑机接口(BCI)有潜力实现人脑与外部环境之间的高速通信。最近,电信中的多址接入(MA)方法已被引入BCI的系统设计中,并显示出其在提高BCI性能方面的潜力。本研究调查了混合频率和相位编码方法在基于多目标SSVEP的BCI中的可行性。具体而言,本研究比较了两种混合目标编码策略:(1)混合频率和相位编码,以及(2)联合频率和相位编码。在一个使用40目标BCI拼写器的模拟在线BCI实验中,对一组六名受试者测试了两种编码方法的BCI性能。在每分钟40个字符(每个字符1.5秒)的拼写速度下,两种方法在受试者中均获得了较高的信息传输率(ITR)(混合编码:172.37±28.67比特/分钟,联合编码:170.94±28.32比特/分钟)。两种方法之间没有统计学上的显著差异(p>0.05)。这些结果表明,混合频率和相位编码方法对于具有大量类别的SSVEP BCI中的多目标编码非常有效,为实现高速BCI拼写器提供了一种实用的解决方案。

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