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Visual Contrast Sensitivity Improvement by Right Frontal High-Beta Activity Is Mediated by Contrast Gain Mechanisms and Influenced by Fronto-Parietal White Matter Microstructure

机译:右前额高β-活动改善视觉对比度的敏感性受对比度增益机制的影响并受额顶白质微观结构的影响

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摘要

Behavioral and electrophysiological studies in humans and non-human primates have correlated frontal high-beta activity with the orienting of endogenous attention and shown the ability of the latter function to modulate visual performance. We here combined rhythmic transcranial magnetic stimulation (TMS) and diffusion imaging to study the relation between frontal oscillatory activity and visual performance, and we associated these phenomena to a specific set of white matter pathways that in humans subtend attentional processes. High-beta rhythmic activity on the right frontal eye field (FEF) was induced with TMS and its causal effects on a contrast sensitivity function were recorded to explore its ability to improve visual detection performance across different stimulus contrast levels. Our results show that frequency-specific activity patterns engaged in the right FEF have the ability to induce a leftward shift of the psychometric function. This increase in visual performance across different levels of stimulus contrast is likely mediated by a contrast gain mechanism. Interestingly, microstructural measures of white matter connectivity suggest a strong implication of right fronto-parietal connectivity linking the FEF and the intraparietal sulcus in propagating high-beta rhythmic signals across brain networks and subtending top-down frontal influences on visual performance.
机译:在人类和非人类灵长类动物中的行为和电生理研究已将额叶高β活性与内源性注意力的定向相关联,并显示出后者功能调节视觉表现的能力。我们将节律性经颅磁刺激(TMS)和扩散成像相结合,以研究额叶振荡活动与视觉表现之间的关系,并将这些现象与人类关注注意力过程的一组特定的白质途径相关联。 TMS诱导右额眼视野(FEF)的高β节律性活动,并记录其对对比敏感度功能的因果关系,以探索其在不同刺激对比水平下改善视觉检测性能的能力。我们的结果表明,参与右FEF的特定于频率的活动模式具有诱导心理功能向左移动的能力。在不同水平的刺激对比中,视觉表现的这种提高可能是由对比增益机制所介导的。有趣的是,白质连通性的微观结构测量表明,将FEF和顶壁沟连接在一起的右额顶壁连通性在大脑网络中传播高β节律性信号,并且对视觉性能具有自上而下的正面影响。

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