Center for Lifespan Psychology, Max Planck Institute for Human Development, 14195 Berlin, Germany; Davis School of Gerontology, University of Southern California, 90089 Los Angeles, CA, USA.
Davis School of Gerontology, University of Southern California, 90089 Los Angeles, CA, USA.
Trends Cogn Sci. 2022 Jan;26(1):38-52. doi: 10.1016/j.tics.2021.10.009. Epub 2021 Nov 16.
During moments involving selective attention, the thalamus orchestrates the preferential processing of prioritized information by coordinating rhythmic neural activity within a distributed frontoparietal network. The timed release of neuromodulators from subcortical structures dynamically sculpts neural synchronization in thalamocortical networks to meet current attentional demands. In particular, noradrenaline modulates the balance of cortical excitation and inhibition, as reflected by thalamocortical alpha synchronization (~8-12 Hz). These neuromodulatory adjustments facilitate the selective processing of prioritized information. Thus, by disrupting effective rhythmic coordination in attention networks, age-related locus coeruleus (LC) degeneration can impair higher levels of neural processing. In sum, findings across different levels of analysis and modalities shed light on how the noradrenergic modulation of neural synchronization helps to shape selective attention.
在涉及选择性注意的时刻,丘脑通过协调分布式额顶网络中的节律性神经活动来协调优先信息的优先处理。从皮质下结构释放的神经调质的定时释放动态地塑造了丘脑皮质网络中的神经同步,以满足当前的注意力需求。特别是,去甲肾上腺素调节皮质兴奋和抑制之间的平衡,如丘脑皮质α同步(~8-12 Hz)所反映的那样。这些神经调质的调整促进了优先信息的选择性处理。因此,通过破坏注意力网络中有效的节律协调,与年龄相关的蓝斑(LC)退化可能会损害更高水平的神经处理。总之,不同分析水平和模态的研究结果揭示了去甲肾上腺素对神经同步的调制如何有助于塑造选择性注意。