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Signal Detection and Coding in the Accessory Olfactory System

机译:辅助嗅觉系统中的信号检测和编码

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In many mammalian species, the accessory olfactory system plays a central role in guiding behavioral and physiological responses to social and reproductive interactions. Because of its relatively compact structure and its direct access to amygdalar and hypothalamic nuclei, the accessory olfactory pathway provides an ideal system to study sensory control of complex mammalian behavior. During the last several years, many studies employing molecular, behavioral, and physiological approaches have significantly expanded and enhanced our understanding of this system. The purpose of the current review is to integrate older and newer studies to present an updated and comprehensive picture of vomeronasal signaling and coding with an emphasis on early accessory olfactory system processing stages. These include vomeronasal sensory neurons in the vomeronasal organ, and the circuitry of the accessory olfactory bulb. Because the overwhelming majority of studies on accessory olfactory system function employ rodents, this review is largely focused on this phylogenetic order, and on mice in particular. Taken together, the emerging view from both older literature and more recent studies is that the molecular, cellular, and circuit properties of chemosensory signaling along the accessory olfactory pathway are in many ways unique. Yet, it has also become evident that, like the main olfactory system, the accessory olfactory system also has the capacity for adaptive learning, experience, and state-dependent plasticity. In addition to describing what is currently known about accessory olfactory system function and physiology, we highlight what we believe are important gaps in our knowledge, which thus define exciting directions for future investigation.
机译:在许多哺乳动物物种中,配件嗅觉系统在指导行为和生理反应对社会和生殖互动的指导中起着核心作用。由于其结构相对较小及其直接进入Amygdalar和下丘脑核,因此辅助嗅觉途径提供了研究复杂哺乳动物行为的感官控制的理想体系。在过去几年中,许多采用分子,行为和生理方法的研究大大扩大和增强了我们对该系统的理解。目前审查的目的是将较旧的和较新的研究集成,以提高葡聚放信号传导和编码的更新和全面的图像,并重点是早期附件嗅觉系统处理阶段。这些包括在葡聚物器官中的含有呕吐物感觉神经元,以及附件嗅灯泡的电路。由于大多数关于辅助嗅觉系统功能的研究雇用啮齿动物,因此该评论主要集中在这种系统发育顺序上,特别是小鼠。从旧的文献中的新兴视图和最近的研究一起携带,是沿着附件嗅觉途径的分子,蜂窝和电路特性是独一无二的。然而,它也显而易见的是,与主要的嗅觉系统一样,配件嗅觉系统也具有自适应学习,经验和国家依赖可塑性的能力。除了描述目前已知的附件嗅觉系统功能和生理学,我们突出了我们所知的重要差距,从而定义了未来调查的令人兴奋的方向。

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