前额皮质内锥体神经元长程连接组的亚区偏好。
Subregion preference in the long-range connectome of pyramidal neurons in the medial prefrontal cortex.
机构信息
Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, MoE Key Laboratory for Biomedical Photonics, Huazhong University of Science and Technology, Wuhan, China.
HUST-Suzhou Institute for Brainsmatics, JITRI, Suzhou, China.
出版信息
BMC Biol. 2024 Apr 29;22(1):95. doi: 10.1186/s12915-024-01880-7.
BACKGROUND
The medial prefrontal cortex (mPFC) is involved in complex functions containing multiple types of neurons in distinct subregions with preferential roles. The pyramidal neurons had wide-range projections to cortical and subcortical regions with subregional preferences. Using a combination of viral tracing and fluorescence micro-optical sectioning tomography (fMOST) in transgenic mice, we systematically dissected the whole-brain connectomes of intratelencephalic (IT) and pyramidal tract (PT) neurons in four mPFC subregions.
RESULTS
IT and PT neurons of the same subregion projected to different target areas while receiving inputs from similar upstream regions with quantitative differences. IT and PT neurons all project to the amygdala and basal forebrain, but their axons target different subregions. Compared to subregions in the prelimbic area (PL) which have more connections with sensorimotor-related regions, the infralimbic area (ILA) has stronger connections with limbic regions. The connection pattern of the mPFC subregions along the anterior-posterior axis showed a corresponding topological pattern with the isocortex and amygdala but an opposite orientation correspondence with the thalamus.
CONCLUSIONS
By using transgenic mice and fMOST imaging, we obtained the subregional preference whole-brain connectomes of IT and pyramidal tract PT neurons in the mPFC four subregions. These results provide a comprehensive resource for directing research into the complex functions of the mPFC by offering anatomical dissections of the different subregions.
背景
内侧前额叶皮层(mPFC)参与包含多个不同亚区中具有优先作用的神经元的复杂功能。 锥形神经元具有广泛的皮质和皮质下区域投射,具有亚区偏好。在转基因小鼠中,我们使用病毒追踪和荧光微光学切片断层扫描(fMOST)相结合的方法,系统地剖析了四个 mPFC 亚区中脑内(IT)和锥体束(PT)神经元的全脑连接组。
结果
同一亚区的 IT 和 PT 神经元投射到不同的靶区,而接受来自相似上游区域的输入具有定量差异。IT 和 PT 神经元都投射到杏仁核和基底前脑,但它们的轴突投射到不同的亚区。与与感觉运动相关区域有更多连接的前扣带皮层(PL)亚区相比,后扣带皮层(ILA)与边缘区域的连接更强。mPFC 亚区沿前后轴的连接模式与大脑皮层和杏仁核具有相应的拓扑模式,但与丘脑的方向对应关系相反。
结论
通过使用转基因小鼠和 fMOST 成像,我们获得了 mPFC 四个亚区中 IT 和锥体束 PT 神经元的亚区偏好全脑连接组。这些结果为通过对不同亚区进行解剖学剖析来指导 mPFC 复杂功能的研究提供了全面的资源。