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Spatial Location and Sound Timbre as Informative Cues in Auditory BCI/BMI - Electrodes Position Optimization for Brain Evoked Potential Enhancement

机译:空间位置和声音音色作为听觉BCI / BMI中的信息提示-大脑诱发电位增强的电极位置优化

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The paper introduces a novel auditory BCI/BMI paradigm based on combined sound timbre and horizontal plane spatial locations as informative cues. The presented concept is based on responses to eight-directional audio stimuli with various tonal and environmental sound stimuli. The approach is based on a monitoring of brain electrical activity by means of the electroencephalogram (EEG). The previously developed by the authors spatial auditory stimulus is extended to varying in timbre sound stimuli which feature helps the subjects to attend to the targets. The main achievement discussed in the paper is an offline BCI analysis based on an optimization of electrode locations on the scalp and evoked response latency for further classification results improvement. The so developed new BCI paradigm is more user-friendly and it leads to better results comparing to previously utilized simple tonal or steady-state stimuli.
机译:本文介绍了一种新颖的听觉BCI / BMI范例,该范例基于组合的声音音色和水平面空间位置作为信息提示。提出的概念基于对八向音频刺激与各种音调和环境声音刺激的响应。该方法基于通过脑电图(EEG)监控脑电活动的方法。作者先前开发的空间听觉刺激被扩展到各种音色刺激,其特征是帮助受试者注意目标。本文讨论的主要成就是基于优化头皮上电极位置和诱发响应潜伏期的离线BCI分析,以进一步改善分类结果。这样开发的新BCI范例更加用户友好,并且与以前使用的简单音调或稳态刺激相比,它可以带来更好的结果。

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