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Combining Brain-Computer Interface and Eye Tracking for High-Speed Text Entry in Virtual Reality

机译:在虚拟现实中结合大脑 - 计算机界面和眼睛跟踪的高速文本条目

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Gaze interaction provides an efficient way for users to communicate and control in virtual reality (VR) presented by head-mounted displays. In gaze-based text-entry systems, eye tracking and brain-computer interface (BCI) are the two most commonly used approaches. This paper presents a hybrid BCI system for text entry in VR by combining steady-state visual evoked potentials (SSVEP) and eye tracking. The user interface in VR designed a 40-target virtual keyboard using a joint frequency-phase modulation method for SSVEP. Eye position was measured by an eye-tracking accessory in the VR headset. Target-related gaze direction was detected by combining simultaneously recorded SSVEP and eye position data. Offline and online experiments indicate that the proposed system can type at a speed around 10 words per minute, leading to an information transfer rate (ITR) of 270 bits per minute. The results further demonstrate the superiority of the hybrid method over single-modality methods for VR applications.
机译:凝视交互为用户提供了一种有效的方法,用于在头戴式显示器呈现的虚拟现实(VR)中进行通信和控制。在基于凝视的文本输入系统中,眼跟踪和脑电脑界面(BCI)是最常用的两种方法。本文通过组合稳态视觉诱发电位(SSVEP)和眼睛跟踪,介绍了VR中文本条目的混合BCI系统。 VR中的用户界面使用用于SSVEP的联合频率相位调制方法设计了一个40目标虚拟键盘。通过VR耳机中的眼睛跟踪配件测量眼睛位置。通过组合同时记录的SSVEP和眼位置数据来检测目标相关的凝视方向。离线和在线实验表明,所提出的系统可以以每分钟10个字的速度键入,导致每分钟270位的信息传输速率(ITR)。结果进一步证明了对VR应用的单模方法的混合方法的优越性。

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