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首页> 外文期刊>Cerebral cortex >Visual Contrast Sensitivity Improvement by Right Frontal High-Beta Activity Is Mediated by Contrast Gain Mechanisms and Influenced by Fronto-Parietal White Matter Microstructure
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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:通过右前β活性的视觉对比敏感性改善是由对比增益机制介导的介导的,受前凸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:人类和非人类原始动物的行为和电生理学研究具有与内源性关注的定向相关的前型高β活性,并示出了后一种功能调节视觉性能的能力。我们在这里组合有节奏的经颅磁刺激(TMS)和扩散成像,研究了正面振荡活动和视觉性能之间的关系,以及我们将这些现象与在人类的特定的白体物质途径中相关联的这些现象。用TMS诱导右前眼睛场(FEF)上的高β节奏活性,并记录了对对比灵敏功能的原因影响,以探讨其在不同刺激对比度水平上提高视觉检测性能的能力。我们的结果表明,从事右FEF的频率特定活动模式有能力诱导心理测量功能的向左转移。这种在不同水平的刺激对比度上的这种增加可能是由对比增益机制介导的。有趣的是,白质连接的微观结构措施表明,右前方连接的强烈含义与脑网络中的高β节奏信号传播高β节奏信号并对视觉性能进行了下调的额外反感。

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