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首页> 外文期刊>Electromyography and Clinical Neurophysiology: International Bimonthly Review >Study on transient VEP-based brain-computer interface using non-direct gazed visual stimuli.
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Study on transient VEP-based brain-computer interface using non-direct gazed visual stimuli.

机译:基于非直接注视视觉刺激的基于瞬态VEP的脑机接口研究。

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摘要

It is necessary for brain-computer interfaces (BCIs) to be non-offensive devices for daily use to improve the quality of life of users, especially for the motor disabled. Some BCIs which are based on steady-state visual evoked potentials (SSVEPs), however, are unpleasant because users have to gaze at high-speed blinking light as visual stimuli. Furthermore, these kinds of BCIs may not be used as universal devices because SSVEPs are not detectable by some users. Considering these facts, we propose a novel BCI using a non-direct gazing method based on transient VEPs. This interface uses a low-speed blinking lattice pattern as visual stimuli, and users gaze at other visual targets displayed on the right and the left sides of the stimuli. The gazing direction is determined by the waveform difference of transient VEPs detected when users gaze at either target. Compared with SSVEP-based BCIs, the proposed BCI is less annoying because it uses a low-speed blinking pattern as visual stimuli and users do not have to gaze at the stimuli directly. In addition, bipolar derivation could reduce unnecessary signals and the number of responses used for signal averaging to detect transient VEPs, which leads to shorter detection time of the VEPs providing this interface with acceptable speed as a BCI in terms of determining gazing direction. Experiments with 7 volunteer subjects showed more than an 85% accuracy rate in gaze direction judgments. The result suggests that the proposed BCI can be used as a substitute for SSVEP-based BCIs, especially for users in which SSVEPs are not detected.
机译:脑计算机接口(BCI)必须是日常使用的无害设备,以提高用户的生活质量,尤其是对于残障人士。但是,某些基于稳态视觉诱发电位(SSVEP)的BCI令人不快,因为用户必须凝视高速闪烁的光作为视觉刺激。此外,由于某些用户无法检测到SSVEP,因此这些BCI可能无法用作通用设备。考虑到这些事实,我们提出了一种基于瞬态VEP的非直接注视方法的新型BCI。该界面使用低速闪烁的格子图案作为视觉刺激,并且用户凝视刺激右侧和左侧显示的其他视觉目标。注视方向由用户注视任一目标时检测到的瞬态VEP的波形差异确定。与基于SSVEP的BCI相比,拟议的BCI较少烦人,因为它使用低速闪烁模式作为视觉刺激,用户无需直接凝视刺激。另外,双极导数可以减少不必要的信号和用于信号平均以检测瞬态VEP的响应数量,这导致VEP的检测时间更短,从而在确定注视方向方面为BCI提供了可接受的速度作为BCI。对7名志愿者的实验表明,注视方向判断的准确率超过85%。结果表明,提出的BCI可以替代基于SSVEP的BCI,尤其是对于未检测到SSVEP的用户。

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