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首页> 外文期刊>Brain and Neuroscience Advances >50?years of decoding olfaction:
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50?years of decoding olfaction:

机译:解码嗅觉50年:

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摘要

The identification, in the late 20th century, of unexpectedly large families of G-protein-coupled chemosensory receptors revolutionised our understanding of the olfactory system. The discovery that non-selective olfactory sensory neurons express a single olfactory receptor type and project to a specific glomerulus in the main olfactory bulb provided fundamental insight into the spatial pattern of odour representation in the main olfactory bulb. Studies using head-fixed awake mice and optogenetics have revealed the importance of the timing of glomerular input in relation to the sniff cycle and the role of piriform cortex in odour object recognition. What in the 1970s had appeared to be a relatively simple dichotomy between odour detection by the main olfactory system and pheromone detection by the vomeronasal system has been found to consist of multiple subsystems. These mediate innate responses to odours and pheromones and to substances as diverse as O2, volatile urinary constituents, peptides and proteins.
机译:在20世纪后期,对G蛋白偶联化学感应受体意外家族的鉴定,彻底改变了我们对嗅觉系统的理解。非选择性嗅觉感觉神经元表达单个嗅觉受体类型并投射到主要嗅球中的特定肾小球的发现提供了对主要嗅球中气味表示的空间模式的基本认识。使用头部固定的清醒小鼠和光遗传学的研究表明,肾小球输入的时机与嗅觉循环有关,并且梨状皮层在气味物体识别中的作用也很重要。在1970年代,主要嗅觉系统的气味检测与犁鼻系统的信息素检测之间似乎是一个相对简单的二分法,发现它由多个子系统组成。它们介导对气味和信息素以及对各种物质(如O2,挥发性尿成分,肽和蛋白质)的先天反应。

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