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基于稳态视觉诱发电位的人类时间对比度敏感度电生理模型。

Electrophysiological model of human temporal contrast sensitivity based on SSVEP.

作者信息

Tsoneva Tsvetomira, Garcia-Molina Gary, Desain Peter

机构信息

Department of Digital Engagement, Cognition and Behavior, Philips Research, Eindhoven, Netherlands.

Centre for Cognition, Donders Institute for Brain, Cognition and Behaviour, Radboud University, Nijmegen, Netherlands.

出版信息

Front Neurosci. 2023 Jul 31;17:1180829. doi: 10.3389/fnins.2023.1180829. eCollection 2023.

Abstract

The present study aims to connect the psychophysical research on the human visual perception of flicker with the neurophysiological research on steady-state visual evoked potentials (SSVEPs) in the context of their application needs and current technological developments. In four experiments, we investigated whether a temporal contrast sensitivity model could be established based on the electrophysiological responses to repetitive visual stimulation and, if so, how this model compares to the psychophysical models of flicker visibility. We used data from 62 observers viewing periodic flicker at a range of frequencies and modulation depths sampled around the perceptual visibility thresholds. The resulting temporal contrast sensitivity curve (TCSC) was similar in shape to its psychophysical counterpart, confirming that the human visual system is most sensitive to repetitive visual stimulation at frequencies between 10 and 20 Hz. The electrophysiological TCSC, however, was below the psychophysical TCSC measured in our experiments for lower frequencies (1-50 Hz), crossed it when the frequency was 50 Hz, and stayed above while decreasing at a slower rate for frequencies in the gamma range (40-60 Hz). This finding provides evidence that SSVEPs could be measured even without the conscious perception of flicker, particularly at frequencies above 50 Hz. The cortical and perceptual mechanisms that apply at higher temporal frequencies, however, do not seem to directly translate to lower frequencies. The presence of harmonics, which show better response for many frequencies, suggests non-linear processing in the visual system. These findings are important for the potential applications of SSVEPs in studying, assisting, or augmenting human cognitive and sensorimotor functions.

摘要

本研究旨在结合人类对闪烁视觉感知的心理物理学研究与稳态视觉诱发电位(SSVEP)的神经生理学研究,考虑到它们的应用需求和当前技术发展情况。在四个实验中,我们研究了是否可以基于对重复性视觉刺激的电生理反应建立一个时间对比度敏感性模型,如果可以,该模型与闪烁可见性的心理物理学模型相比如何。我们使用了62名观察者的数据,这些观察者在一系列频率和调制深度下观看周期性闪烁,这些频率和调制深度是在感知可见性阈值附近采样的。所得的时间对比度敏感性曲线(TCSC)在形状上与其心理物理学对应曲线相似,证实了人类视觉系统在10至20Hz之间的频率对重复性视觉刺激最为敏感。然而,电生理TCSC在较低频率(1 - 50Hz)时低于我们实验中测量的心理物理学TCSC,在频率为50Hz时与之交叉,并在伽马范围(40 - 60Hz)的频率下保持在上方且下降速度较慢。这一发现提供了证据,表明即使没有对闪烁的有意识感知也可以测量SSVEP,特别是在频率高于50Hz时。然而,在较高时间频率下适用的皮层和感知机制似乎并不能直接转化到较低频率。谐波的存在,其在许多频率上显示出更好的反应,表明视觉系统中存在非线性处理。这些发现对于SSVEP在研究、辅助或增强人类认知和感觉运动功能方面的潜在应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ad3/10433170/08c3e00246cd/fnins-17-1180829-g0001.jpg

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