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丘脑枕叶调节视觉皮层区域间的同步性。

Pulvinar Modulates Synchrony across Visual Cortical Areas.

作者信息

Cortes Nelson, de Souza Bruno O F, Casanova Christian

机构信息

School of Optometry, Université de Montréal, CP 6128 succursale centre-ville, Montreal, QC H3C 3J7, Canada.

出版信息

Vision (Basel). 2020 Apr 10;4(2):22. doi: 10.3390/vision4020022.

Abstract

The cortical visual hierarchy communicates in different oscillatory ranges. While gamma waves influence the feedforward processing, alpha oscillations travel in the feedback direction. Little is known how this oscillatory cortical communication depends on an alternative route that involves the pulvinar nucleus of the thalamus. We investigated whether the oscillatory coupling between the primary visual cortex (area 17) and area 21a depends on the transthalamic pathway involving the pulvinar in cats. To that end, visual evoked responses were recorded in areas 17 and 21a before, during and after inactivation of the pulvinar. Local field potentials were analyzed with Wavelet and Granger causality tools to determine the oscillatory coupling between layers. The results indicate that cortical oscillatory activity was enhanced during pulvinar inactivation, in particular for area 21a. In area 17, alpha band responses were represented in layers II/III. In area 21a, gamma oscillations, except for layer I, were significantly increased, especially in layer IV. Granger causality showed that the pulvinar modulated the oscillatory information between areas 17 and 21a in gamma and alpha bands for the feedforward and feedback processing, respectively. Together, these findings indicate that the pulvinar is involved in the mechanisms underlying oscillatory communication along the visual cortex.

摘要

皮层视觉层级在不同的振荡范围内进行信息传递。γ波影响前馈处理,而α振荡则沿反馈方向传播。目前对于这种振荡性皮层通讯如何依赖于一条涉及丘脑枕核的替代通路知之甚少。我们研究了猫的初级视觉皮层(17区)和21a区之间的振荡耦合是否依赖于涉及丘脑枕的经丘脑通路。为此,在丘脑枕失活前、失活期间和失活后,记录了17区和21a区的视觉诱发电反应。使用小波和格兰杰因果关系工具分析局部场电位,以确定各层之间的振荡耦合。结果表明,在丘脑枕失活期间,皮层振荡活动增强,特别是21a区。在17区,α波段反应出现在II/III层。在21a区,除I层外,γ振荡显著增加,尤其是在IV层。格兰杰因果关系表明,丘脑枕分别在前馈和反馈处理中调制了17区和21a区之间γ和α波段的振荡信息。总之,这些发现表明丘脑枕参与了沿视觉皮层振荡通讯的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fed6/7357165/c628a9cf6d0a/vision-04-00022-g001.jpg

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