Gaudry Quentin
Department of Biology, University of Maryland, College Park, MD.
Yale J Biol Med. 2018 Mar 28;91(1):23-32. eCollection 2018 Mar.
Recent advances in genetic tools and optical imaging technology have allowed rodent and researchers to explore the relationship between serotonergic modulation and olfactory processing at a mechanistic level previously unfeasible. Here, I review the basic organization of olfactory and serotonergic systems in both rodents and and draw comparisons where similarities exist. I discuss circuit level models that explain many of serotonin's effects on olfactory responses in the olfactory system's inputs and outputs. Finally, I discuss models of integration within wide-field centrifugal neurons to emphasize the importance of studying serotonergic neurons directly to build more realistic models of olfactory and modulatory interactions.
基因工具和光学成像技术的最新进展使啮齿动物和研究人员能够在以前无法实现的机制层面上探索血清素能调节与嗅觉处理之间的关系。在这里,我回顾了啮齿动物和人类嗅觉及血清素能系统的基本组织,并在存在相似之处的地方进行比较。我讨论了电路层面的模型,这些模型解释了血清素对嗅觉系统输入和输出中嗅觉反应的许多影响。最后,我讨论了广域离心神经元内的整合模型,以强调直接研究血清素能神经元对于构建更现实的嗅觉和调节相互作用模型的重要性。