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首页> 外文期刊>Journal of neural engineering >Effects of stimulation frequency and stimulation waveform on steady-state visual evoked potentials using a computer monitor
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Effects of stimulation frequency and stimulation waveform on steady-state visual evoked potentials using a computer monitor

机译:使用计算机监视器,刺激频率和刺激波形对稳态视觉诱发电位的影响

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Objective. A visual stimulator plays a vital part in brain-computer interfaces (BCIs) based on steady-state visual evoked potential (SSVEP). The properties of visual stimulation, such as frequency, color, and waveform, will influence SSVEP-based BCI performance to some extent. Recently, the computer monitor serves as a visual stimulator that is widespread in SSVEP-based BCIs because of its great flexibility in generating visual stimuli. However, stimulation properties based on a computer monitor have received very little attention. For a better comprehension of SSVEPs, this study explored the stimulation effects of waveforms and frequencies, when evoking SSVEPs through a computer monitor. Approach. This study utilized the approximation methods to realize sine- and square-wave temporal modulations at 18 stimulation frequencies ranging from 6 to 40 Hz on a conventional 120 Hz LCD screen. We collected electroencephalogram (EEG) datasets from 12 healthy subjects and compared the signal-to-noise ratios (SNRs), amplitudes, and topographic mapping of SSVEPs evoked by these two temporal modulation flickers (sine- and square-wave). In addition, a BCI experiment with two nine-target BCIs (i.e. low-frequency BCI and high-frequency BCI) was implemented to compare the two stimulation waveforms in terms of BCI performance. Main results. For both sine- and square-wave stimulation conditions, strong SSVEPs over the occipital area were observed for each stimulation frequency. SSVEP amplitudes at the stimulation frequency exhibited a global peak in the low-frequency band. The second harmonic SSVEP frequency-response functions showed the largest amplitude at 6 Hz and fell sharply for higher frequencies. In the BCI experiment, the classification performance of the square-wave stimuli was notably higher than that of the sine-wave stimuli when using shorter data lengths. Significance. These results suggested that the square-wave flicker was more efficient at implementing high-speed BCIs based on SSVEP when using a computer monitor as a visual stimulator.
机译:目的。视觉刺激器在基于稳态视觉诱发电位(SSVEP)的脑机接口(BCI)中起着至关重要的作用。视觉刺激的属性,例如频率,颜色和波形,将在一定程度上影响基于SSVEP的BCI性能。近来,计算机监视器用作视觉刺激器,因为它在产生视觉刺激方面具有很大的灵活性,因此在基于SSVEP的BCI中广泛使用。但是,基于计算机监视器的刺激特性很少受到关注。为了更好地理解SSVEP,通过计算机监视器唤起SSVEP时,本研究探讨了波形和频率的刺激效果。方法。这项研究利用逼近方法在传统的120 Hz液晶显示屏上以18个刺激频率(范围从6到40 Hz)实现正弦波和方波时间调制。我们收集了来自12位健康受试者的脑电图(EEG)数据集,并比较了这两个时间调制闪烁(正弦波和方波)引起的SSVEP的信噪比(SNR),幅度和地形图。另外,实施了具有两个九个目标BCI(即低频BCI和高频BCI)的BCI实验,以比较两种刺激波形的BCI性能。主要结果。对于正弦波和方波刺激条件,对于每种刺激频率,在枕骨区域都观察到了强烈的SSVEP。刺激频率下的SSVEP振幅在低频频段显示出一个整体峰值。二次谐波SSVEP频率响应函数在6 Hz处显示最大振幅,而在较高频率下急剧下降。在BCI实验中,当使用较短的数据长度时,方波刺激的分类性能明显高于正弦波刺激的分类性能。意义。这些结果表明,当使用计算机监视器作为视觉刺激器时,方波闪烁可以更有效地实现基于SSVEP的高速BCI。

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