Transcranial Alternating Current Stimulation over Frontal Eye Fields Mimics Attentional Modulation of Visual Processing

经颅交流电刺激 神经科学 视皮层 视觉处理 经颅直流电刺激 刺激 心理学 前视野 阿尔法(金融) 感觉加工 脑电图 心理测量功能 注意力控制 听力学 感觉系统 认知 视觉感受 眼球运动 磁刺激 医学 心理物理学 发展心理学 心理测量学 感知 扫视 结构效度
作者
Jonas Misselhorn,Marina Fiene,Jan‐Ole Radecke,Andreas K. Engel,Till R. Schneider
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:44 (25): e1510232024-e1510232024 被引量:2
标识
DOI:10.1523/jneurosci.1510-23.2024
摘要

Attentional control over sensory processing has been linked to neural alpha oscillations and related inhibition of cerebral cortex. Despite the wide consensus on the functional relevance of alpha oscillations for attention, precise neural mechanisms of how alpha oscillations shape perception and how this top-down modulation is implemented in cortical networks remain unclear. Here, we tested the hypothesis that alpha oscillations in frontal eye fields (FEFs) are causally involved in the top-down regulation of visual processing in humans (male and female). We applied sham-controlled, intermittent transcranial alternating current stimulation (tACS) over bilateral FEF at either 10 Hz (alpha) or 40 Hz (gamma) to manipulate attentional preparation in a visual discrimination task. Under each stimulation condition, we measured psychometric functions for contrast perception and introduced a novel linear mixed modeling approach for statistical control of neurosensory side effects of the electric stimulation. tACS at alpha frequency reduced the slope of the psychometric function, resulting in improved subthreshold and impaired superthreshold contrast perception. Side effects on the psychometric functions were complex and showed large interindividual variability. Controlling for the impact of side effects on the psychometric parameters by using covariates in the linear mixed model analysis reduced this variability and strengthened the perceptual effect. We propose that alpha tACS over FEF mimicked a state of endogenous attention by strengthening a fronto-occipitoparietal network in the alpha band. We speculate that this network modulation enhanced phasic gating in occipitoparietal cortex leading to increased variability of single-trial psychometric thresholds, measurable as a reduction of psychometric slope.

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