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乙酰胆碱能增强人类大脑的视觉注意力和神经振荡。

Cholinergic enhancement of visual attention and neural oscillations in the human brain.

机构信息

Wellcome Trust Centre for Neuroimaging, University College London, London WC1N3BG, UK.

出版信息

Curr Biol. 2012 Mar 6;22(5):397-402. doi: 10.1016/j.cub.2012.01.022. Epub 2012 Feb 2.

Abstract

Cognitive processes such as visual perception and selective attention induce specific patterns of brain oscillations. The neurochemical bases of these spectral changes in neural activity are largely unknown, but neuromodulators are thought to regulate processing. The cholinergic system is linked to attentional function in vivo, whereas separate in vitro studies show that cholinergic agonists induce high-frequency oscillations in slice preparations. This has led to theoretical proposals that cholinergic enhancement of visual attention might operate via gamma oscillations in visual cortex, although low-frequency alpha/beta modulation may also play a key role. Here we used MEG to record cortical oscillations in the context of administration of a cholinergic agonist (physostigmine) during a spatial visual attention task in humans. This cholinergic agonist enhanced spatial attention effects on low-frequency alpha/beta oscillations in visual cortex, an effect correlating with a drug-induced speeding of performance. By contrast, the cholinergic agonist did not alter high-frequency gamma oscillations in visual cortex. Thus, our findings show that cholinergic neuromodulation enhances attentional selection via an impact on oscillatory synchrony in visual cortex, for low rather than high frequencies. We discuss this dissociation between high- and low-frequency oscillations in relation to proposals that lower-frequency oscillations are generated by feedback pathways within visual cortex.

摘要

认知过程,如视觉感知和选择性注意,会引起特定的脑振荡模式。这些神经活动中光谱变化的神经化学基础在很大程度上是未知的,但神经调质被认为可以调节处理过程。胆碱能系统与体内的注意力功能有关,而单独的体外研究表明,胆碱能激动剂会在切片制剂中诱导高频振荡。这导致了理论上的假设,即胆碱能增强视觉注意力可能通过视觉皮层中的伽马振荡来实现,尽管低频 alpha/beta 调制也可能发挥关键作用。在这里,我们使用 MEG 在人类进行空间视觉注意力任务时记录了一种胆碱能激动剂(毒扁豆碱)给药时的皮层振荡。这种胆碱能激动剂增强了视觉皮层低频 alpha/beta 振荡对空间注意力的影响,这种影响与药物诱导的表现加速相关。相比之下,胆碱能激动剂并没有改变视觉皮层中的高频 gamma 振荡。因此,我们的发现表明,胆碱能调质通过对视觉皮层中的振荡同步性的影响,增强了注意力的选择,这种影响与低频而非高频有关。我们讨论了这种高频和低频振荡之间的分离,与低频振荡是由视觉皮层内的反馈途径产生的假设有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81cb/3314945/956e04640866/gr1.jpg

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