Azizi Sayed Ausim
Department of Neurology, Global Neuroscience Institute, Chester, PA, USA.
Neuroscientist. 2022 Apr;28(2):121-143. doi: 10.1177/1073858420974336. Epub 2020 Dec 9.
How do monoamines influence the perceptual and behavioral aspects of brain function? A library of information regarding the genetic, molecular, cellular, and function of monoamines in the nervous system and other organs has accumulated. We briefly review monoamines' anatomy and physiology and discuss their effects on the target neurons and circuits. Monoaminergic cells in the brain stem receive inputs from sensory, limbic, and prefrontal areas and project extensively to the forebrain and hindbrain. We review selected studies on molecular, cellular, and electrophysiological effects of monoamines on the brain's target areas. The idea is that monoamines, by reversibly modulating the "primary" information processing circuits, regulate and switch the functions of brain networks and can reversibly alter the "brain states," such as consciousness, emotions, and movements. Monoamines, as the drivers of normal motor and sensory brain operations, including housekeeping, play essential roles in pathogenesis of neuropsychiatric diseases.
单胺如何影响大脑功能的感知和行为方面?关于单胺在神经系统和其他器官中的基因、分子、细胞及功能的信息库已经积累起来。我们简要回顾单胺的解剖学和生理学,并讨论它们对靶神经元和神经回路的影响。脑干中的单胺能细胞接收来自感觉、边缘系统和前额叶区域的输入,并广泛投射到前脑和后脑。我们回顾了关于单胺对大脑靶区域的分子、细胞和电生理效应的精选研究。其观点是,单胺通过可逆地调节“初级”信息处理回路,调节和切换大脑网络的功能,并能可逆地改变“脑状态”,如意识、情绪和运动。单胺作为正常运动和感觉大脑运作(包括日常功能)的驱动因素,在神经精神疾病的发病机制中起重要作用。