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Retinotopic and topographic analyses with gaze restriction for steady-state visual evoked potentials

机译:视线受限的视网膜和地形分析用于稳态视觉诱发电位

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摘要

Although the mechanisms of steady-state visual evoked potentials (SSVEPs) have been well studied, none of them have been implemented with strictly experimental conditions. Our objective was to create an ideal observer condition to exploit the features of SSVEPs. We present here an electroencephalographic (EEG) eye tracking experimental paradigm that provides biofeedback for gaze restriction during the visual stimulation. Specifically, we designed an EEG eye tracking synchronous data recording system for successful trial selection. Forty-six periodic flickers within a visual field of 11.5° were successively presented to evoke SSVEP responses, and online biofeedback based on an eye tracker was provided for gaze restriction. For eight participants, SSVEP responses in the visual field and topographic maps from full-brain EEG were plotted and analyzed. The experimental results indicated that the optimal visual flicking arrangement to boost SSVEPs should include the features of circular stimuli within a 4–6° spatial distance and increased stimulus area below the fixation point. These findings provide a basis for determining stimulus parameters for neural engineering studies, e.g. SSVEP-based brain-computer interface (BCI) designs. The proposed experimental paradigm could also provide a precise framework for future SSVEP-related studies.
机译:尽管已经很好地研究了稳态视觉诱发电位(SSVEP)的机制,但都没有在严格的实验条件下实现它们。我们的目标是创造一个理想的观察者条件,以利用SSVEP的功能。我们在这里提出了一种脑电图(EEG)眼动追踪实验范例,该范例可在视觉刺激期间为凝视限制提供生物反馈。具体来说,我们设计了一个EEG眼动追踪同步数据记录系统,以成功进行试验选择。连续呈现11.5°视野内的46次周期性闪烁,以唤起SSVEP响应,并提供了基于眼动仪的在线生物反馈以限制视线。对于八名参与者,绘制并分析了来自全脑EEG的视野和地形图中的SSVEP响应。实验结果表明,增强SSVEPs的最佳视觉轻弹安排应包括4–6°空间距离内的圆形刺激和在固定点以下增加刺激区域的特征。这些发现为确定神经工程研究的刺激参数提供了基础。基于SSVEP的脑机接口(BCI)设计。拟议的实验范式还可以为未来与SSVEP相关的研究提供精确的框架。

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