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前嗅核介导啮齿动物球间平行通路。

Anterior olfactory nucleus mediates parallel inter-bulbar pathways in rodents.

作者信息

Wang Li, Li Anan, Jin Sen, Liu Yue, Yu Feilong, Haddad Rafi, Jia Fan, Su Peng, Guo Jiajia, Zhang Zhijian, Liu Qing, Xu Fuqiang

机构信息

School of Medicine, Jingchu University of Technology, Jingmen, 448000, China.

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Key Laboratory of Magnetic Resonance in Biological Systems, Wuhan Center for Magnetic Resonance, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan, 430071, China.

出版信息

BMC Biol. 2025 Aug 29;23(1):271. doi: 10.1186/s12915-025-02353-1.

Abstract

BACKGROUND

Interhemispheric communication of olfactory information is crucial for accurate odor perception and odor source localization in animals. However, the underlying structural basis for this communication in mammals remains poorly understood. Using electrophysiological recordings and virus-mediated tracing, we systematically dissected the neural circuits involved in interhemispheric transmission between the bilateral olfactory bulbs (OBs).

RESULTS

We identified the anterior olfactory nucleus (AON) as a central hub that facilitates direct communication between the OBs via three distinct pathways: the excitatory inter-bulbar pathway, the inhibitory inter-bulbar pathway, and the bi-bulbar co-innervation pathway. Notably, our results highlight the differential roles of AON subregions in these pathways: the pars externa (AONpE) primarily mediates the inhibitory pathway, while the pars principalis (AONpP) participates in all three pathways. These pathways recruit CaMKIIα-positive neurons in specific AON regions, which in turn project to distinct neuronal populations within the OBs.  CONCLUSIONS: This study provides novel anatomical insights into the neural circuits underlying interhemispheric olfactory communication. The differential connectivity patterns of AON subregions contribute to a better understanding of how bilateral olfactory information is processed and transferred between the two OBs.

摘要

背景

嗅觉信息的半球间交流对于动物准确感知气味和定位气味源至关重要。然而,哺乳动物中这种交流的潜在结构基础仍知之甚少。我们使用电生理记录和病毒介导的示踪技术,系统地剖析了双侧嗅球(OB)之间半球间传递所涉及的神经回路。

结果

我们确定前嗅核(AON)是一个中枢枢纽,它通过三种不同的途径促进嗅球之间的直接交流:兴奋性球间通路、抑制性球间通路和双球共同支配通路。值得注意的是,我们的结果突出了AON亚区域在这些通路中的不同作用:外侧部(AONpE)主要介导抑制性通路,而主部(AONpP)参与所有三种通路。这些通路在特定的AON区域募集CaMKIIα阳性神经元,这些神经元进而投射到嗅球内不同的神经元群体。

结论

本研究为半球间嗅觉交流的神经回路提供了新的解剖学见解。AON亚区域的不同连接模式有助于更好地理解双侧嗅觉信息在两个嗅球之间是如何处理和传递的。

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