Slater Cody, Liu Yuxiang, Weiss Evan, Yu Kunpeng, Wang Qi
Department of Biomedical Engineering, Columbia University, ET 351, 500 W. 120th Street, New York, NY 10027, USA.
Vagelos College of Physicians and Surgeons, Columbia University, 630 West 168th Street, New York, NY 10032, USA.
Brain Sci. 2022 Jul 7;12(7):890. doi: 10.3390/brainsci12070890.
The noradrenergic and cholinergic modulation of functionally distinct regions of the brain has become one of the primary organizational principles behind understanding the contribution of each system to the diversity of neural computation in the central nervous system. Decades of work has shown that a diverse family of receptors, stratified across different brain regions, and circuit-specific afferent and efferent projections play a critical role in helping such widespread neuromodulatory systems obtain substantial heterogeneity in neural information processing. This review briefly discusses the anatomical layout of both the noradrenergic and cholinergic systems, as well as the types and distributions of relevant receptors for each system. Previous work characterizing the direct and indirect interaction between these two systems is discussed, especially in the context of higher order cognitive functions such as attention, learning, and the decision-making process. Though a substantial amount of work has been done to characterize the role of each neuromodulator, a cohesive understanding of the region-specific cooperation of these two systems is not yet fully realized. For the field to progress, new experiments will need to be conducted that capitalize on the modular subdivisions of the brain and systematically explore the role of norepinephrine and acetylcholine in each of these subunits and across the full range of receptors expressed in different cell types in these regions.
大脑功能不同区域的去甲肾上腺素能和胆碱能调节,已成为理解每个系统对中枢神经系统神经计算多样性贡献背后的主要组织原则之一。数十年的研究表明,分布于不同脑区的多种受体家族以及特定回路的传入和传出投射,在帮助此类广泛的神经调节系统在神经信息处理中获得实质性异质性方面发挥着关键作用。本综述简要讨论了去甲肾上腺素能和胆碱能系统的解剖布局,以及每个系统相关受体的类型和分布。讨论了先前表征这两个系统之间直接和间接相互作用的研究工作,特别是在诸如注意力、学习和决策过程等高阶认知功能的背景下。尽管已经开展了大量工作来表征每种神经调节剂的作用,但尚未完全实现对这两个系统区域特异性合作的连贯理解。为推动该领域的发展,需要进行新的实验,利用大脑的模块化细分,系统地探索去甲肾上腺素和乙酰胆碱在这些亚单位中的作用,以及在这些区域不同细胞类型中表达的所有受体中的作用。