Shi Chaoqun, Liu Sinan, Chen Xiping, Tao Luyang
Key Laboratory of Evidence Science (China University of Political Science and Law), Ministry of Education, 100192 Beijing, China; Department of Forensic Science, Soochow University, 215021 Suzhou, China.
Department of Forensic Science, Soochow University, 215021 Suzhou, China.
Int J Psychophysiol. 2021 Apr;162:40-48. doi: 10.1016/j.ijpsycho.2021.01.021. Epub 2021 Feb 3.
Covert spatial attention directs the attentional spotlight to a particular part of the visual field and modulates the retinotopic organized oscillatory brain activity. This study aimed to investigate the electrophysiological characteristics of oscillatory brain activity when simulating different defect degrees of the central visual field.
The power of theta and alpha activity was extracted using time-frequency analysis in forty healthy participants enrolled in the three-stimulus oddball paradigm. Standard stimuli were black-and-white checkerboards. Target stimuli simulated different degrees of the central visual field defect by superimposing black discs with different radii (5, 10, 20, and 30 degrees of visual angle) on the center of the peripheral checkerboard stimulation, and distractor stimuli presented in the reverse form with a constant radius.
By simulating central visual field defects, the increased theta power and decreased alpha power was observed when detecting target stimuli. Besides, the magnitude of increased theta power and decreased alpha power peaked at the 10-degree defect conditions, and gradually decayed to the 5 and 30-degree defect conditions, which separately indicated two key points in the visual field through the spatial attentional modulations.
Using cortical oscillatory dynamics in the time-frequency platform, the defect category of the central visual field could be quantified by alpha and theta oscillations in power differences. These findings suggest that cortical oscillations are sensitive markers for the discrimination of gradient effects of the central visual field defects and further demonstrate the phenomenon of functional dissociation in the visual field in covert spatial attention status.
隐蔽空间注意将注意力焦点导向视野的特定部分,并调节视网膜拓扑组织的振荡脑活动。本研究旨在探讨模拟不同程度的中央视野缺损时振荡脑活动的电生理特征。
在参与三刺激Oddball范式的40名健康参与者中,使用时频分析提取θ波和α波活动的功率。标准刺激是黑白棋盘格。目标刺激通过在外周棋盘格刺激中心叠加不同半径(5、10、20和30度视角)的黑色圆盘来模拟不同程度的中央视野缺损,干扰刺激以恒定半径的相反形式呈现。
通过模拟中央视野缺损,在检测目标刺激时观察到θ波功率增加和α波功率降低。此外,θ波功率增加和α波功率降低的幅度在10度缺损条件下达到峰值,并在5度和30度缺损条件下逐渐衰减,这分别通过空间注意调制表明了视野中的两个关键点。
在时频平台上利用皮层振荡动力学,中央视野的缺损类别可以通过α波和θ波振荡的功率差异进行量化。这些发现表明,皮层振荡是区分中央视野缺损梯度效应的敏感标志物,并进一步证明了隐蔽空间注意状态下视野中的功能分离现象。