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评估视觉刺激特性对稳态视觉诱发电位和瞳孔直径的影响。

Assessing the influence of visual stimulus properties on steady-state visually evoked potentials and pupil diameter.

机构信息

Department of Cognitive Robotics, Delft University of Technology, Delft, The Netherlands.

Department of Radiology and Nuclear Medicine, Amsterdam UMC, Location AMC, Amsterdam, The Netherlands.

出版信息

Biomed Phys Eng Express. 2024 Oct 30;10(6). doi: 10.1088/2057-1976/ad865d.

Abstract

Steady-State Visual Evoked Potentials (SSVEPs) are brain responses measurable via electroencephalography (EEG) in response to continuous visual stimulation at a constant frequency. SSVEPs have been instrumental in advancing our understanding of human vision and attention, as well as in the development of brain-computer interfaces (BCIs). Ongoing questions remain about which type of visual stimulus causes the most potent SSVEP response. The current study investigated the effects of color, size, and flicker frequency on the signal-to-noise ratio of SSVEPs, complemented by pupillary light reflex measurements obtained through an eye-tracker. Six participants were presented with visual stimuli that differed in terms of color (white, red, green), shape (circles, squares, triangles), size (10,000 to 30,000 pixels), flicker frequency (8 to 25 Hz), and grouping (one stimulus at a time versus four stimuli presented in a 2 × 2 matrix to simulate a BCI). The results indicated that larger stimuli elicited stronger SSVEP responses and more pronounced pupil constriction. Additionally, the results revealed an interaction between stimulus color and flicker frequency, with red being more effective at lower frequencies and white at higher frequencies. Future SSVEP research could focus on the recommended waveform, interactions between SSVEP and power grid frequency, a wider range of flicker frequencies, a larger sample of participants, and a systematic comparison of the information transfer obtained through SSVEPs, pupil diameter, and eye movements.

摘要

稳态视觉诱发电位(SSVEPs)是通过脑电图(EEG)测量的大脑对恒定频率的连续视觉刺激的反应。SSVEPs 对于我们理解人类视觉和注意力以及脑机接口(BCI)的发展起到了重要作用。目前仍有一些问题需要研究,即哪种类型的视觉刺激会引起最强的 SSVEP 反应。本研究通过眼动仪测量瞳孔光反射,考察了颜色、大小和闪烁频率对 SSVEP 信噪比的影响。六名参与者接受了不同颜色(白色、红色、绿色)、形状(圆形、方形、三角形)、大小(10000 到 30000 像素)、闪烁频率(8 到 25 Hz)和分组(一次一个刺激与四个刺激呈 2×2 矩阵呈现以模拟 BCI)的视觉刺激。结果表明,较大的刺激会引起更强的 SSVEP 反应和更明显的瞳孔收缩。此外,结果还揭示了刺激颜色和闪烁频率之间的相互作用,红色在较低频率下更有效,白色在较高频率下更有效。未来的 SSVEP 研究可以集中在推荐的波形、SSVEP 和电网频率之间的相互作用、更广泛的闪烁频率范围、更大的参与者样本以及通过 SSVEP、瞳孔直径和眼球运动获得的信息传输的系统比较上。

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