University of Wisconsin-Madison.
Stanford University.
J Cogn Neurosci. 2024 Jul 1;36(8):1620-1642. doi: 10.1162/jocn_a_02177.
Research into ascending sensory pathways and cortical networks has generated detailed models of perception. These same cortical regions are strongly connected to subcortical structures, such as the basal ganglia (BG), which have been conceptualized as playing key roles in reinforcement learning and action selection. However, because the BG amasses experiential evidence from higher and lower levels of cortical hierarchies, as well as higher-order thalamus, it is well positioned to dynamically influence perception. Here, we review anatomical, functional, and clinical evidence to demonstrate how the BG can influence perceptual processing and conscious states. This depends on the integrative relationship between cortex, BG, and thalamus, which allows contributions to sensory gating, predictive processing, selective attention, and representation of the temporal structure of events.
对上行感觉通路和皮层网络的研究已经产生了详细的感知模型。这些相同的皮层区域与皮质下结构(如基底神经节(BG))紧密相连,BG 被认为在强化学习和动作选择中发挥着关键作用。然而,由于 BG 从皮质层次结构的较高和较低水平以及较高阶的丘脑积累了经验证据,因此它非常适合动态地影响感知。在这里,我们回顾了解剖学、功能和临床证据,以证明 BG 如何影响感知处理和意识状态。这取决于皮层、BG 和丘脑之间的整合关系,这种关系允许对感觉门控、预测处理、选择性注意以及事件时间结构的表示做出贡献。