Zhao Peilin, Wang Huading, Li Anan, Sun Qingtao, Jiang Tao, Li Xiangning, Gong Hui
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, Jiangsu Industrial Technology Research Institute (JITRI), Suzhou, China.
Front Neuroanat. 2022 May 17;16:843303. doi: 10.3389/fnana.2022.843303. eCollection 2022.
The pontomesencephalic tegmentum, comprising the pedunculopontine nucleus and laterodorsal tegmental nucleus, is involved in various functions complex connections; however, the organizational structure of these circuits in the whole brain is not entirely clear. Here, combining viral tracing with fluorescent micro-optical sectional tomography, we comprehensively investigated the input and output circuits of two cholinergic subregions in a continuous whole-brain dataset. We found that these nuclei receive abundant input with similar spatial distributions but with different quantitative measures and acquire similar neuromodulatory afferents from the ascending reticular activation system. Meanwhile, these cholinergic nuclei project to similar targeting areas throughout multiple brain regions and have different spatial preferences in 3D. Moreover, some cholinergic connections are unidirectional, including projections from the pedunculopontine nucleus and laterodorsal tegmental nucleus to the ventral posterior complex of the thalamus, and have different impacts on locomotion and anxiety. These results reveal the integrated cholinergic connectome of the midbrain, thus improving the present understanding of the organizational structure of the pontine-tegmental cholinergic system from its anatomical structure to its functional modulation.
脑桥中脑被盖,包括脚桥核和外侧背侧被盖核,参与多种功能且具有复杂的连接;然而,这些回路在全脑中的组织结构尚不完全清楚。在此,我们将病毒示踪与荧光显微光学断层扫描相结合,在连续的全脑数据集中全面研究了两个胆碱能亚区的输入和输出回路。我们发现,这些核团接收具有相似空间分布但数量不同的丰富输入,并从上行网状激活系统获得相似的神经调节传入纤维。同时,这些胆碱能核团投射到多个脑区的相似靶向区域,并且在三维空间中具有不同的空间偏好。此外,一些胆碱能连接是单向的,包括从脚桥核和外侧背侧被盖核到丘脑腹后复合体的投射,并且对运动和焦虑有不同的影响。这些结果揭示了中脑的整合胆碱能连接组,从而从解剖结构到功能调节,改进了目前对脑桥被盖胆碱能系统组织结构的理解。