Department of Experimental Psychology, Complutense University of Madrid, Madrid, Spain.
Center for Cognitive and Computational Neuroscience, Complutense University of Madrid, Madrid, Spain.
Psychophysiology. 2024 Feb;61(2):e14452. doi: 10.1111/psyp.14452. Epub 2023 Oct 3.
In recent years, steady-state visual evoked potentials (SSVEPs) became an increasingly valuable tool to investigate neural dynamics of competitive attentional interactions and brain-computer interfaces. This is due to their good signal-to-noise ratio, allowing for single-trial analysis, and their ongoing oscillating nature that enables to analyze temporal dynamics of facilitation and suppression. Given the popularity of SSVEPs, it is surprising that only a few studies looked at the cortical sources of these responses. This is in particular the case when searching for studies that assessed the cortical sources of attentional SSVEP amplitude modulations. To address this issue, we used a typical spatial attention task and recorded neuromagnetic fields (MEG) while presenting frequency-tagged stimuli in the left and right visual fields, respectively. Importantly, we controlled for attentional deployment in a baseline period before the shifting cue. Subjects either attended to a central fixation cross or to two peripheral stimuli simultaneously. Results clearly showed that signal sources and attention effects were restricted to the early visual cortex: V1, V2, hMT+, precuneus, occipital-parietal, and inferior-temporal cortex. When subjects attended to central fixation first, shifting attention to one of the peripheral stimuli resulted in a significant activation increase for the to-be-attended stimulus with no activation decrease for the to-be-ignored stimulus in hMT+ and inferio-temporal cortex, but significant SSVEF decreases from V1 to occipito-parietal cortex. When attention was first deployed to both rings, shifting attention away from one ring basically resulted in a significant activation decrease in all areas for the then-to-be-ignored stimulus.
近年来,稳态视觉诱发电位(SSVEPs)已成为研究竞争注意力相互作用和脑机接口的神经动力学的一种越来越有价值的工具。这是因为它们具有良好的信噪比,允许进行单次分析,并且它们的持续振荡特性使得能够分析促进和抑制的时间动态。鉴于 SSVEPs 的普及,令人惊讶的是,只有少数研究关注这些反应的皮质源。当寻找评估注意力 SSVEP 幅度调制的皮质源的研究时,尤其如此。为了解决这个问题,我们使用了一个典型的空间注意任务,并在呈现左、右视野中的频率标记刺激时记录了神经磁场(MEG)。重要的是,我们在转移线索之前的基线期控制了注意力的部署。受试者要么专注于中央固定十字,要么同时专注于两个外围刺激。结果清楚地表明,信号源和注意效应仅限于早期视觉皮层:V1、V2、hMT+、顶内沟、枕顶和下颞叶皮层。当受试者首先专注于中央固定点时,将注意力转移到一个外围刺激上,导致待关注刺激的激活增加,而 hMT+和下颞叶皮层中被忽略刺激的激活没有减少,但 V1 到枕顶叶皮层的 SSVEF 显著减少。当注意力首先部署到两个环上时,基本上将注意力从一个环上移开会导致所有区域对随后被忽略的刺激的激活显著减少。