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SVM-based recursive feature elimination to compare phase synchronization computed from broadband and narrowband EEG signals in Brain-Computer Interfaces

机译:基于SVM的递归特征消除功能,可比较从脑机接口中的宽带和窄带EEG信号计算出的相位同步

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To allow motor-disabled people for communication, Brain-Computer Interfaces (BCIs) are being developed. Such a communication does not depend on the brain's normal output pathways of peripheral nerves and muscles, but is based on analysis of recorded brain activity. In this paper, we compare the performance of power features and phase locking values (PLVs) computed from broadband and narrowband filtered EEG signals for discriminating 3 mental tasks in the framework of a BCI. EEG signals were recorded from 5 subjects while performing the 3 mental tasks left- and right-hand movement imagination and word generation. To reduce the total amount of features, the most discriminative features were selected in a 2-step feature selection procedure by SVM-based recursive feature elimination. Significance tests demonstrated that band power features were more discriminative when they were computed in the narrower frequency band 8-12 Hz. In case of PLV features, the discrimination of mental tasks was significantly better when they were computed from the broader 8-30 Hz frequency band, as compared to the narrower bands 8-12, 13-18 and 19-30 Hz.
机译:为了允许残障人士进行交流,正在开发脑机接口(BCI)。这种交流不依赖于大脑周围神经和肌肉的正常输出路径,而是基于对记录的大脑活动的分析。在本文中,我们比较了从宽带和窄带滤波的EEG信号计算出的功率特征和锁相值(PLV)的性能,以区分BCI框架中的3个心理任务。在执行左右三个动作想象力和单词生成这3个心理任务时,记录了来自5位受试者的EEG信号。为了减少特征总量,通过基于SVM的递归特征消除,在两步特征选择过程中选择了最具区别性的特征。显着性测试表明,当在较窄的8-12 Hz频带中进行计算时,频带功率特征更具区分性。在具有PLV功能的情况下,与较窄的8-12、13-18和19-30 Hz频带相比,从较宽的8-30 Hz频带计算时,对智力任务的区分明显更好。

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