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Characterizing Computer Access Using a One-Channel EEG Wireless Sensor

机译:使用单通道EEG无线传感器表征计算机访问

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摘要

This work studies the feasibility of using mental attention to access a computer. Brain activity was measured with an electrode placed at the Fp1 position and the reference on the left ear; seven normally developed people and three subjects with cerebral palsy (CP) took part in the experimentation. They were asked to keep their attention high and low for as long as possible during several trials. We recorded attention levels and power bands conveyed by the sensor, but only the first was used for feedback purposes. All of the information was statistically analyzed to find the most significant parameters and a classifier based on linear discriminant analysis (LDA) was also set up. In addition, 60% of the participants were potential users of this technology with an accuracy of over 70%. Including power bands in the classifier did not improve the accuracy in discriminating between the two attentional states. For most people, the best results were obtained by using only the attention indicator in classification. Tiredness was higher in the group with disabilities (2.7 in a scale of 3) than in the other (1.5 in the same scale); and modulating the attention to access a communication board requires that it does not contain many pictograms (between 4 and 7) on screen and has a scanning period of a relatively high tscan ≈  10 s. The information transfer rate (ITR) is similar to the one obtained by other brain computer interfaces (BCI), like those based on sensorimotor rhythms (SMR) or slow cortical potentials (SCP), and makes it suitable as an eye-gaze independent BCI.
机译:这项工作研究了使用精神注意力来访问计算机的可行性。用电极放置在Fp1位置并将参考电极放在左耳上来测量大脑活动。有7名正常人和3名脑瘫(CP)患者参加了实验。在几次试验中,要求他们尽可能长时间地保持注意力高低。我们记录了传感器传达的注意力水平和能带,但只有第一个用于反馈目的。对所有信息进行统计分析以找到最重要的参数,并且还建立了基于线性判别分析(LDA)的分类器。此外,60%的参与者是该技术的潜在用户,其准确性超过70%。在分类器中包含功率带并不能提高区分两个注意力状态的准确性。对于大多数人而言,仅在分类中使用注意力指标即可获得最佳结果。残疾人群的疲劳感较高(3级为2.7分),高于其他组(1.5级)。并调整对访问通讯板的注意力要求它在屏幕上不包含许多象形图(介于4和7之间),并且扫描周期的tscan约为10 s相对较高。信息传输率(ITR)与其他脑部计算机接口(BCI)所获得的信息传输率相似,例如基于感觉运动节律(SMR)或慢皮质电位(SCP)的信息传输率,使其适合作为独立于视线的BCI 。

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