Schmitt L Ian, Wimmer Ralf D, Nakajima Miho, Happ Michael, Mofakham Sima, Halassa Michael M
NYU Neuroscience Institute, Department of Neuroscience and Physiology, NYU Langone Medical Center, New York, New York 10016, USA.
Center for Neural Science, New York University, New York, New York 10016, USA.
Nature. 2017 May 11;545(7653):219-223. doi: 10.1038/nature22073. Epub 2017 May 3.
Although interactions between the thalamus and cortex are critical for cognitive function, the exact contribution of the thalamus to these interactions remains unclear. Recent studies have shown diverse connectivity patterns across the thalamus, but whether this diversity translates to thalamic functions beyond relaying information to or between cortical regions is unknown. Here we show, by investigating the representation of two rules used to guide attention in the mouse prefrontal cortex (PFC), that the mediodorsal thalamus sustains these representations without relaying categorical information. Specifically, mediodorsal input amplifies local PFC connectivity, enabling rule-specific neural sequences to emerge and thereby maintain rule representations. Consistent with this notion, broadly enhancing PFC excitability diminishes rule specificity and behavioural performance, whereas enhancing mediodorsal excitability improves both. Overall, our results define a previously unknown principle in neuroscience; thalamic control of functional cortical connectivity. This function, which is dissociable from categorical information relay, indicates that the thalamus has a much broader role in cognition than previously thought.
虽然丘脑与皮层之间的相互作用对认知功能至关重要,但丘脑在这些相互作用中的具体贡献仍不清楚。最近的研究表明,丘脑存在多种连接模式,但这种多样性是否会转化为丘脑在向皮层区域传递信息或在皮层区域之间传递信息之外的功能尚不清楚。在这里,我们通过研究用于指导小鼠前额叶皮层(PFC)注意力的两条规则的表征,发现背内侧丘脑维持这些表征而不传递分类信息。具体而言,背内侧输入增强了局部PFC连接性,使特定规则的神经序列得以出现,从而维持规则表征。与此观点一致,广泛增强PFC兴奋性会降低规则特异性和行为表现,而增强背内侧兴奋性则会同时改善这两者。总体而言,我们的结果定义了神经科学中一个此前未知的原理;丘脑对功能性皮层连接性的控制。这种与分类信息传递可分离的功能表明,丘脑在认知中的作用比之前认为的要广泛得多。