Topographic connectivity and cellular profiling reveal detailed input pathways and functionally distinct cell types in the subthalamic nucleus

丘脑底核 神经科学 谷氨酸的 生物 脑深部刺激 基底神经节 苍白球 帕金森病 谷氨酸受体 中枢神经系统 疾病 医学 受体 生物化学 病理
作者
Hyungju Jeon,Hojin Lee,Dae-Hyuk Kwon,Jiwon Kim,Keiko Tanaka-Yamamoto,Jang Soo Yook,Linqing Feng,Hyun Lee,Yong Pyo Lim,Zang-Hee Cho,Sun Ha Paek,Jiyoung Kim
出处
期刊:Cell Reports [Cell Press]
卷期号:38 (9): 110439-110439 被引量:4
标识
DOI:10.1016/j.celrep.2022.110439
摘要

The subthalamic nucleus (STN) controls psychomotor activity and is an efficient therapeutic deep brain stimulation target in individuals with Parkinson's disease. Despite evidence indicating position-dependent therapeutic effects and distinct functions within the STN, the input circuit and cellular profile in the STN remain largely unclear. Using neuroanatomical techniques, we construct a comprehensive connectivity map of the indirect and hyperdirect pathways in the mouse STN. Our circuit- and cellular-level connectivities reveal a topographically graded organization with three types of indirect and hyperdirect pathways (external globus pallidus only, STN only, and collateral). We confirm consistent pathways into the human STN by 7 T MRI-based tractography. We identify two functional types of topographically distinct glutamatergic STN neurons (parvalbumin [PV+/-]) with synaptic connectivity from indirect and hyperdirect pathways. Glutamatergic PV+ STN neurons contribute to burst firing. These data suggest a complex interplay of information integration within the basal ganglia underlying coordinated movement control and therapeutic effects.

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