基底神经节
足前核
神经科学
足爪被盖核
间接运动途径
抑制性突触后电位
价(化学)
核心
心理学
生物
物理
中枢神经系统
医学
内科学
帕金森病
脑深部刺激
量子力学
疾病
作者
Michel Fallah,Kenea C Udobi,Aleksandra E Swiatek,Chelsea B Scott,Rebekah C. Evans
标识
DOI:10.7554/elife.102308.2
摘要
Abstract The canonical basal ganglia model predicts that the substantia nigra pars reticulata (SNr) and the globus pallidus externa (GPe) will have specific effects on locomotion: the SNr inhibiting locomotion and the GPe enhancing it. In this study, we use in vivo optogenetics to show that the GPe exerts non-canonical effects on locomotion while the SNr has no gross motor impact through inhibition of the PPN. We also show that these structures mediate opposing effects on reward. To understand how these structures differentially modulate the PPN, we use ex vivo whole-cell recording with optogenetics to comprehensively dissect the SNr and GPe synaptic connections to regionally- and molecularly-defined populations of PPN neurons. The SNr inhibits all PPN subtypes, but most strongly inhibits caudal glutamatergic neurons. The GPe selectively inhibits caudal glutamatergic and GABAergic neurons, avoiding both cholinergic and rostral cells. This circuit characterization reveals non-canonical basal ganglia pathways for locomotion and valence.
科研通智能强力驱动
Strongly Powered by AbleSci AI