Zhang Zhijian, Zhang Hongruo, Wen Pengjie, Zhu Xutao, Wang Li, Liu Qing, Wang Jie, He Xiaobin, Wang Huadong, Xu Fuqiang
College of Life Science and Technology, Huazhong University of Science and TechnologyWuhan, China.
Center for Brain Science, Key Laboratory of Magnetic Resonance in Biological Systems and State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, CAS Center for Excellence in Brain Science and Intelligence Technology, Chinese Academy of SciencesWuhan, China.
Front Neural Circuits. 2017 Jul 28;11:52. doi: 10.3389/fncir.2017.00052. eCollection 2017.
The medial part of the olfactory tubercle (OT) is a brain structure located at the interface of the reward and olfactory system. It is closely related to pheromone-rewards, natural reinforcement, addiction and many other behaviors. However, the structure of the anatomic circuitry of the medial part of the OT is still unclear. In the present study, the medial part of the OT was found to be highly connected with a wide range of brain areas with the help of the pseudorabies virus tracing tool. In order to further investigate the detailed connections for specific neurons, another tracing tool - rabies virus was utilized for D1R-cre and D2R-cre mice. The D1R and D2R neurons in the medial part of the OT were both preferentially innervated by the olfactory areas, especially the piriform cortex, and both had similar direct input patterns. With the help of the adeno-associated virus labeling, it was found that the two subpopulations of neurons primarily innervate with the reward related brain regions, with slightly less axons projecting to the olfactory areas. Thus, the whole-brain input and output circuitry structures for specific types of neurons in the medial part of the OT were systematically investigated, and the results revealed many unique connecting features. This work could provide new insights for further study into the physiological functions of the medial part of the OT.
嗅结节(OT)的内侧部分是位于奖赏系统和嗅觉系统交界处的脑结构。它与信息素奖赏、自然强化、成瘾及许多其他行为密切相关。然而,OT内侧部分的解剖神经回路结构仍不清楚。在本研究中,借助伪狂犬病病毒示踪工具发现OT内侧部分与广泛的脑区高度相连。为了进一步研究特定神经元的详细连接,另一种示踪工具——狂犬病病毒被用于D1R-cre和D2R-cre小鼠。OT内侧部分的D1R和D2R神经元均优先接受嗅觉区域的支配,尤其是梨状皮层,且两者具有相似的直接输入模式。借助腺相关病毒标记发现,这两个神经元亚群主要支配与奖赏相关的脑区,投射到嗅觉区域的轴突略少。因此,系统地研究了OT内侧部分特定类型神经元的全脑输入和输出神经回路结构,结果揭示了许多独特的连接特征。这项工作可为进一步研究OT内侧部分的生理功能提供新的见解。