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诱发电位P3成分在虚拟公寓控制中的应用。

Use of the evoked potential P3 component for control in a virtual apartment.

作者信息

Bayliss Jessica D

机构信息

University of Rochester, Rochester, NY 14627, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2003 Jun;11(2):113-6. doi: 10.1109/TNSRE.2003.814438.

Abstract

Virtual reality (VR) may prove useful for training individuals to use a brain-computer interface (BCI). It could provide complex and controllable experimental environments during BCI research and development as well as increase user motivation. In the study reported here, we examined the robustness of the evoked potential P3 component in virtual and nonvirtual environments. We asked subjects to control several objects or commands in a virtual apartment. Our results indicate that there are no significant differences in the P3 signal between subjects performing a task while immersed in VR versus subjects looking at a computer monitor. This indicates the robustness of the P3 signal over different environments. For an online control task, the performance in a VR environment was not significantly different from performance when looking at a computer monitor. There was, however, a more significant result when the subject's head view of the virtual world was fixed (p < 0.05) when compared with looking at a computer monitor. We also found that subjects' self-reported qualitative experiences did not necessarily match their objective performance. Six out of nine subjects liked the VR environment better, but only one of these subjects performed the best in this environment. The possible ramifications of this, as well as plans for future work, are discussed.

摘要

虚拟现实(VR)可能被证明对训练个人使用脑机接口(BCI)有用。它可以在BCI研发过程中提供复杂且可控的实验环境,还能提高用户的积极性。在本文报道的研究中,我们检验了虚拟环境和非虚拟环境中诱发电位P3成分的稳健性。我们要求受试者在虚拟公寓中控制多个物体或指令。我们的结果表明,沉浸在VR中执行任务的受试者与看着电脑显示器的受试者之间,P3信号没有显著差异。这表明P3信号在不同环境下具有稳健性。对于在线控制任务,VR环境中的表现与看着电脑显示器时的表现没有显著差异。然而,与看着电脑显示器相比,当受试者在虚拟世界中的头部视角固定时,出现了更显著的结果(p < 0.05)。我们还发现,受试者自我报告的定性体验不一定与他们的客观表现相符。九名受试者中有六名更喜欢VR环境,但其中只有一名在该环境中表现最佳。本文讨论了这一现象可能产生的影响以及未来的工作计划。

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