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Control of Basal Ganglia Output by Direct and Indirect Pathway Projection Neurons

机译:通过直接和间接途径投射神经元控制基底神经节输出。

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摘要

The direct and indirect efferent pathways from striatum ultimately reconverge to influence basal ganglia output nuclei, which in turn regulate behavior via thalamocortical and brainstem motor circuits. However, the distinct contributions of these two efferent pathways in shaping basal ganglia output are not well understood. We investigated these processes using selective optogenetic control of the direct and indirect pathways, in combination with single-unit recording in the basal ganglia output nucleus substantia nigra pars reticulata (SNr) in mice. Optogenetic activation of striatal direct and indirect pathway projection neurons produced diverse cellular responses in SNr neurons, with stimulation of each pathway eliciting both excitations and inhibitions. Despite this response heterogeneity, the effectiveness of direct pathway stimulation in producing movement initiation correlated selectively with the subpopulation of inhibited SNr neurons. In contrast, effective indirect pathway-mediated motor suppression was most strongly influenced by excited SNr neurons. Our results support the theory that key basal ganglia output neurons serve as an inhibitory gate over motor output that can be opened or closed by striatal direct and indirect pathways, respectively.
机译:纹状体的直接和间接传出途径最终重新融合,影响基底神经节输出核,进而通过丘脑皮层和脑干运动回路调节行为。然而,这两种传出途径在塑造基底神经节输出中的独特作用尚不清楚。我们调查了直接和间接途径的选择性光遗传学控制,结合在小鼠的基底神经节输出核黑质网(SNr)中的单单元记录这些过程。纹状体直接和间接途径投射神经元的光遗传学激活在SNr神经元中产生了多种细胞反应,每种途径的刺激均引起兴奋和抑制。尽管存在这种响应异质性,但是直接途径刺激产生运动启动的有效性与抑制的SNr神经元的亚群选择性相关。相反,兴奋的SNr神经元对有效的间接途径介导的运动抑制的影响最大。我们的结果支持以下理论:关键的基底神经节输出神经元可作为对运动输出的抑制门,可分别通过纹状体直接和间接途径打开或关闭运动输出。

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