Department of Psychiatry, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.
Neurobiology Curriculum, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.
Nat Commun. 2018 Jun 25;9(1):2455. doi: 10.1038/s41467-018-04785-6.
Ongoing changes in arousal influence sensory processing and behavioral performance. Yet the circuit-level correlates for this influence remain poorly understood. Here, we investigate how functional interaction between posterior parietal cortex (PPC) and lateral posterior (LP)/Pulvinar is influenced by ongoing fluctuations in pupil-linked arousal, which is a non-invasive measure of neuromodulatory tone in the brain. We find that fluctuations in pupil-linked arousal correlate with changes to PPC to LP/Pulvinar oscillatory interaction, with cortical alpha oscillations driving activity during low arousal states, and LP/Pulvinar driving PPC in the theta frequency band during higher arousal states. Active visual exploration by saccadic eye movements elicits similar transitions in thalamo-cortical interaction. Furthermore, the presentation of naturalistic video stimuli induces thalamo-cortical network states closely resembling epochs of high arousal in the absence of visual input. Thus, neuromodulators may play a role in dynamically sculpting the patterns of thalamo-cortical functional interaction that underlie visual processing.
持续变化的觉醒状态会影响感觉处理和行为表现。然而,这种影响的环路相关性仍知之甚少。在这里,我们研究了后顶叶皮层 (PPC) 和外侧后 (LP)/丘脑枕之间的功能相互作用是如何受到与觉醒相关的瞳孔波动的影响,而瞳孔波动是大脑神经调质状态的一种非侵入性测量方法。我们发现,与觉醒相关的瞳孔波动与 PPC 与 LP/丘脑枕之间的振荡相互作用的变化相关联,皮质 alpha 振荡在低觉醒状态下驱动活动,而 LP/丘脑枕在较高觉醒状态下驱动 PPC 在 theta 频带中。通过扫视眼动进行主动视觉探索会引发类似的丘脑皮质相互作用的转变。此外,呈现自然视频刺激会诱导出与视觉输入无关的高觉醒状态下非常相似的丘脑皮质网络状态。因此,神经调质可能在动态塑造视觉处理的基础上发挥作用,塑造丘脑皮质功能相互作用的模式。