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Research on Steady-State Visual Evoked Potentials in 3D Displays

机译:3D显示器中稳态视觉诱发电位的研究

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Brain-computer interfaces (BCIs) are intuitive systems for users to communicate with outer electronic devices. Steady-state visual evoked potential (SSVEP) is one of the common inputs for BCI systems due to its easy detection and high information transfer rates. An advanced interactive platform integrated with liquid crystal displays is leading a trend to provide an alternative option not only for the handicapped but also for the public to make our lives more convenient. Many SSVEP-based BCI systems have been studied in a 2D environment; however there is only little literature about SSVEP-based BCI systems using 3D stimuli. 3D displays have potentials in SSVEP-based BCI systems because they can offer vivid images, good quality in presentation, various stimuli and more entertainment. The purpose of this study was to investigate the effect of two important 3D factors (disparity and crosstalk) on SSVEPs. Twelve participants participated in the experiment with a patterned retarder 3D display. The results show that there is a significant difference (p-value<0.05) between large and small disparity angle, and the signal-to-noise ratios (SNRs) of small disparity angles is higher than those of large disparity angles. The 3D stimuli with smaller disparity and lower crosstalk are more suitable for applications based on the results of 3D perception and SSVEP responses (SNR). Furthermore, we can infer the 3D perception of users by SSVEP responses, and modify the proper disparity of 3D images automatically in the future.
机译:脑机接口(BCI)是供用户与外部电子设备进行通信的直观系统。稳态视觉诱发电位(SSVEP)由于易于检测且信息传输率高,因此是BCI系统的常见输入之一。集成有液晶显示器的先进互动平台正在引领趋势,不仅为残障人士提供替代选择,而且为公众提供使生活更加便利的选择。已经在2D环境中研究了许多基于SSVEP的BCI系统。然而,关于使用3D刺激的基于SSVEP的BCI系统的文献很少。 3D显示器在基于SSVEP的BCI系统中具有潜力,因为它们可以提供生动的图像,高质量的演示,各种刺激和更多娱乐。这项研究的目的是调查两个重要的3D因素(视差和串扰)对SSVEP的影响。十二名参与者使用带图案的缓速器3D显示器参加了实验。结果表明,大视差角和小视差角之间存在显着差异(p值<0.05),小视差角的信噪比(SNR)高于大视差角。基于3D感知和SSVEP响应(SNR)的结果,具有较小差异和较低串扰的3D刺激更适合于应用。此外,我们可以通过SSVEP响应推断用户对3D的感知,并在将来自动修改3D图像的适当视差。

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