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Olfactory Circuitry and Behavioral Decisions
Annual Review of Physiology ( IF 18.2 ) Pub Date : 2021-02-10 , DOI: 10.1146/annurev-physiol-031820-092824
Kensaku Mori 1 , Hitoshi Sakano 2
Affiliation  

In mammals, odor information detected by olfactory sensory neurons is converted to a topographic map of activated glomeruli in the olfactory bulb. Mitral cells and tufted cells transmit signals sequentially to the olfactory cortex for behavioral outputs. To elicit innate behavioral responses, odor signals are directly transmitted by distinct subsets of mitral cells from particular functional domains in the olfactory bulb to specific amygdala nuclei. As for the learned decisions, input signals are conveyed by tufted cells as well as by mitral cells to the olfactory cortex. Behavioral scene cells link the odor information to the valence cells in the amygdala to elicit memory-based behavioral responses. Olfactory decision and perception take place in relation to the respiratory cycle. How is the sensory quality imposed on the olfactory inputs for behavioral outputs? How are the two types of odor signals, innate and learned, processed during respiration? Here, we review recent progress on the study of neural circuits involved in decision making in the mouse olfactory system.

中文翻译:


嗅觉回路和行为决策

在哺乳动物中,嗅觉感觉神经元检测到的气味信息被转换为嗅球中激活的肾小球的地形图。二尖瓣细胞和簇状细胞将信号依次传输到嗅觉皮层以进行行为输出。为了引发先天的行为反应,气味信号由来自嗅球中特定功能域的不同二尖瓣细胞亚群直接传递到特定的杏仁核。至于学习到的决定,输入信号由簇状细胞和二尖瓣细胞传送到嗅觉皮层。行为场景细胞将气味信息与杏仁核中的价细胞联系起来,以引发基于记忆的行为反应。嗅觉决定和感知与呼吸循环有关。对行为输出的嗅觉输入如何施加感官质量?呼吸过程中如何处理两种类型的气味信号,先天的和后天的?在这里,我们回顾了在小鼠嗅觉系统中参与决策的神经回路研究的最新进展。

更新日期:2021-02-11
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