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]
日期:2022-03-01
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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