基于P300的脑机接口在消费级脑电图神经耳机中的实现

Saleh I. Alzahrani
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引用次数: 0

摘要

脑机接口(bci)为严重瘫痪患者提供了一种非肌肉的沟通和控制手段。许多脑机接口依赖于P300, P300是一种外源性事件相关电位(ERP)成分,在对不常见但可识别的刺激的呈现作出反应时,大约300 ms产生。虽然市场上有不同的脑电图神经耳机用于记录P300,但由于系统成本和设置时间的原因,并非所有的脑电图神经耳机都适合日常使用。本研究研究了一种价格合理、成本低廉的无线脑电图设备Emotiv EPOC+记录P300信号的可靠性。十位健康的志愿者测试了P300拼写系统,让他们随机拼写10个字符。被试参加Farwell和Donchin在1988年提出的标准P300范式时记录脑电图数据。我们测试了使用不同的矩阵大小(6x6和3x3)、闪烁时间(100和175 ms)和彩色矩阵(白色/灰色和绿色/蓝色)对P300拼写器性能的影响。结果表明,P300振幅与较大的矩阵尺寸和较长的闪光时间呈正相关。此外,使用颜色(绿色/蓝色)刺激可以增强更大的P300振幅。使用线性判别分析(LDA)分类器,当使用6x6矩阵、175 ms闪烁时间和绿色/蓝色刺激条件时,分类准确率最高为75.9 \pm 7.22$%。我们的结论是,这种价格合理的无线神经耳机系统可以为严重残疾人提供一种替代的通信和控制技术,在他们的现实生活环境中有效地使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of P300 based BCI Using a Consumer-grade EEG Neuroheadset
Brain-computer interfaces (BCIs) provide a non-muscular means of communication and control for severely paralyzed patients. Many BCIs depend on the P300 which is an exogenous event-related potential (ERP) component produced about 300 ms in response to the presentation of an infrequent, but recognized, stimulus. Although there are different EEG neuroheadsets in the market used to record the P300, not all of them are suitable for daily use due to the system cost and set-up time. The present study investigated the reliability of an affordable, low-cost, and wireless EEG device, namely Emotiv EPOC+, to record the P300 signals. Ten healthy volunteers tested a P300 speller system to spell 10 random characters. EEG data were recorded while the subjects attended to the standard P300 paradigm introduced by Farwell and Donchin in 1988. We examined the effect of using different matrix size (6x6 and 3x3), flash duration (100 and 175 ms), and colored matrix (white/gray and green/blue) on the performance of the P300 speller. The results show that the P300 amplitude is positively correlated with larger matrix size and longer flash duration. Moreover, the results show that using color (green/blue) stimuli enhanced larger P300 amplitude. Using linear discriminant analysis (LDA) classifier, the highest classification accuracy achieved was $75.9 \pm 7.22$% when using 6x6 matrix, 175 ms flash duration, and green/blue stimuli condition. We conclude that such an affordable and wireless neuroheadset system can provide severely disabled people an alternative communication and control technology to be used effectively in their real-life environments.
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