首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Olfactory fingerprints for major histocompatibility complex-determined body odors.
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Olfactory fingerprints for major histocompatibility complex-determined body odors.

机译:主要组织相容性复合物确定的体味的嗅觉指纹。

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摘要

Recognition of individual body odors is analogous to human face recognition in that it provides information about identity. Individual body odors determined by differences at the major histocompatibility complex (MHC or H-2) have been shown to influence mate choice, pregnancy block, and maternal behavior in mice. Unfortunately, the mechanism and extent of the main olfactory bulb (MOB) and accessory olfactory bulb (AOB) involvement in the discrimination of animals according to H-2-type has remained ambiguous. Here we study the neuronal activation patterns evoked in the MOB in different individuals on exposure to these complex, biologically meaningful sensory stimuli. We demonstrate that body odors from H-2 disparate mice evoke overlapping but distinct maps of neuronal activation in the MOB. The spatial patterns of odor-evoked activity are sufficient to be used like fingerprints to predict H-2 identity using a novel computer algorithm. These results provide functional evidence for discrimination of H-2-determined body odors in the MOB, but do not preclude a role for the AOB. These data further our understanding of the neural strategies used to decode socially relevant odors.
机译:识别单个体味类似于人脸识别,因为它提供了有关身份的信息。由主要组织相容性复合物(MHC或H-2)上的差异确定的个体体味已显示会影响小鼠的配偶选择,妊娠阻滞和产妇行为。不幸的是,主要嗅球(MOB)和辅助嗅球(AOB)参与根据H-2-型区分动物的机制和程度仍然不清楚。在这里,我们研究了暴露于这些复杂的,生物学上有意义的感觉刺激后,不同个体在MOB中引起的神经元激活模式。我们证明,来自H-2不同小鼠的体味会引起MOB中神经元激活的重叠但截然不同的图。气味激活活动的空间模式足以像指纹一样使用新型计算机算法预测H-2身份。这些结果为区分MOB中由H-2-确定的体味提供了功能证据,但并不排除AOB的作用。这些数据使我们进一步了解了用于解码与社会相关的气味的神经策略。

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