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Navigation in a virtual environment by dichotic listening: Simultaneous audio cues for user-directed BCI classification

机译:通过双耳听觉在虚拟环境中导航:用于用户指导的BCI分类的同时音频提示

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Our research is focused on the initial exploration of training a Brain Computer Interface (BCI) by using audio cues to navigate a virtual environment, instead of motor imagery. We have designed our BCI training and navigation to use audio cues that adhere to the dichotic listening (DL) mechanism so that users have an active choice for interaction or giving commands. We have implemented our Dichotic Listening BCI in a Virtual Environment so that it can be used to train users to apply those skills for a BCI to control a real-world assisted locomotive device or to simply navigate within the virtual environment. We hypothesized that the lateralization of the brain's response to music and speech will enhance the classification of a BCI. Unlike previous attempts in using the oddball paradigm, our results show that audio cues can be used simultaneously to elicit distinct EEG signals for BCI while still enabling an active choice for the user. We evaluated users' performance to actively input navigation tasks. Dichotic Listening BCI performs slightly better than Motor Imagery based BCI.
机译:我们的研究重点是通过使用音频提示而不是运动图像来导航虚拟环境来训练大脑计算机接口(BCI)的初步探索。我们已将BCI培训和导航设计为使用遵循双耳听(DL)机制的音频提示,以便用户可以主动选择进行交互或发出命令。我们已经在虚拟环境中实现了Dichotic Listening BCI,以便可以训练用户将这些技能应用于BCI,以控制现实世界中的辅助机车设备或在虚拟环境中轻松导航。我们假设大脑对音乐和语音反应的偏侧化将增强BCI的分类。与以前使用奇数球范式的尝试不同,我们的结果表明,可以同时使用音频提示为BCI引发不同的EEG信号,同时仍然为用户提供主动选择。我们评估了用户的表现以主动输入导航任务。 Dichotic Listening BCI的性能略好于基于Motor Imagery的BCI。

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