首页> 外文期刊>Journal of Cognitive Neuroscience >Interhemispheric Binding of Ambiguous Visual Motion Is Associated with Changes in Beta Oscillatory Activity but Not with Gamma Range Synchrony
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Interhemispheric Binding of Ambiguous Visual Motion Is Associated with Changes in Beta Oscillatory Activity but Not with Gamma Range Synchrony

机译:半球间视觉运动的半球绑定与β振荡活动的变化有关,但与伽马距离同步无关

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摘要

In vision, perceptual features are processed in several regions distributed across the brain. Yet, the brain achieves a coherent perception of visual scenes and objects through integration of these features, which are encoded in spatially segregated brain areas. How the brain seamlessly achieves this accurate integration is currently unknown and is referred to as the “binding problem.” Among the proposed mechanisms meant to resolve the binding problem, the binding-by-synchrony hypothesis proposes that binding is carried out by the synchronization of distant neuronal assemblies. This study aimed at providing a critical test to the binding-by-synchrony hypothesis by evaluating long-range connectivity using EEG during a motion integration visual task that entails binding across hemispheres. Our results show that large-scale perceptual binding is not associated with long-range interhemispheric gamma synchrony. However, distinct perceptual interpretations were found to correlate with changes in beta power. Increased beta activity was observed during binding under ambiguous conditions and originates mainly from parietal regions. These findings reveal that the visual experience of binding can be identified by distinct signatures of oscillatory activity, regardless of long-range gamma synchrony, suggesting that such type of synchrony does not underlie perceptual binding.
机译:在视觉中,感知特征在大脑中分布的多个区域中进行处理。但是,大脑通过整合这些特征(在空间上分离的大脑区域中进行编码)来实现视觉场景和对象的连贯感知。目前尚不清楚大脑如何无缝地实现这种精确整合,这被称为“约束问题”。在提出的旨在解决结合问题的机制中,“按同步结合”假说提出,结合是通过远距离神经元装配的同步进行的。这项研究旨在通过在运动整合视觉任务(需要跨半球进行结合)期间使用EEG评估远程连接性,来为通过同步结合假设提供关键检验。我们的结果表明,大规模的知觉绑定与远程半球间伽玛同步无关。但是,发现不同的感性解释与β功效的变化相关。在模糊条件下的结合过程中观察到β活性增加,并且主要来自壁区。这些发现表明,结合的视觉体验可以通过振荡活动的不同特征来识别,而与远距离伽马同步无关,这表明这种类型的同步并不构成感知结合的基础。

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