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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Integrating Temperature with Odor Processing in the Olfactory Bulb
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Integrating Temperature with Odor Processing in the Olfactory Bulb

机译:将温度与嗅灯泡中的气味加工相结合

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摘要

Temperature perception has long been classified as a somesthetic function solely. However, in recent years several studies brought evidence that temperature perception also takes place in the olfactory system of rodents. Temperature has been described as an effective stimulus for sensory neurons of the Grueneberg ganglion located at the entrance of the nose. Here, we investigate whether a neuronal trace of temperature stimulation can be observed in the glomeruli and mitral cells of the olfactory bulb, using calcium imaging and fast line-scanning microscopy. We show in the Xenopus tadpole system that the gamma-glomerulus, which receives input from olfactory neurons, is highly sensitive to temperature drops at the olfactory epithelium. We observed that thermo-induced activity in the gamma-glomerulus is conveyed to the mitral cells innervating this specific neuropil. Surprisingly, a substantial number of thermosensitive mitral cells were also chemosensitive. Moreover, we report another unique feature of the gamma-glomerulus: it receives ipsilateral and contralateral afferents. The latter fibers pass through the contralateral bulb, cross the anterior commissure, and then run to the ipsilateral olfactory bulb, where they target the gamma-glomerulus. Temperature drops at the contralateral olfactory epithelium also induced responses in the gamma-glomerulus and in mitral cells. Temperature thus appears to be a relevant physiological input to the Xenopus olfactory system. Each olfactory bulb integrates and codes temperature signals originating from receptor neurons of the ipsilateral and contralateral nasal cavities. Finally, temperature and chemical information is processed in shared cellular networks.
机译:温度感知只有被归类为一个麻烦的功能。然而,近年来,几项研究带来了一种证据,即在啮齿动物的嗅觉系统中也发生了温度感知。已经被描述为位于鼻子入口处的Gueneberg神经节的感觉神经元的有效刺激。在这里,我们研究了使用钙成像和快速线扫描显微镜在嗅灯泡的肾小球和二尖瓣细胞中是否可以观察到温度刺激的神经元痕迹。我们在Xenopus蝌蚪系统中展示了从嗅觉神经元接收输入的γ-肾小球对嗅觉上皮的温度降强。我们观察到,γ-肾小球中的热诱导活性被传送到接受该特异性神经内的二尖瓣细胞。令人惊讶的是,大量的热敏二尖瓣细胞也是化学过敏的。此外,我们报告了γ-肾小球的另一个独特特征:它接受了同侧和对侧传入。后一种纤维通过对侧灯泡,穿过前部外壳,然后运行到同侧嗅灯泡,它们靶向γ-肾小球。对侧嗅觉上皮的温度下降还诱导γ-肾小球和二尖瓣细胞中的反应。因此,温度似乎是外交嗅觉系统的相关生理输入。每个嗅球聚合和源自同侧和对侧鼻腔的受体神经元的温度信号。最后,在共享蜂窝网络中处理温度和化学信息。

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