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Balanced activity in basal ganglia projection pathways is critical for contraversive movements

机译:基底神经节投射途径中的平衡活动对于自发运动至关重要

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The basal ganglia, and the striatum in particular, have been implicated in the generation of contraversive movements. The striatum projects to downstream basal ganglia nuclei through two main circuits, originating in striatonigral and striatopallidal neurons, and different models postulate that the two pathways can work in opposition or synergistically. Here we show striatonigral and striatopallidal neurons are concurrently active during spontaneous contraversive movements. Furthermore, we show that unilateral optogenetic inhibition of either or both projection pathways disrupts contraversive movements. Consistently, simultaneous activation of both neuron types produces contraversive movements. Still, we also show that imbalanced activity between the pathways can result in opposing movements being driven by each projection pathway. These data show that balanced activity in both striatal projection pathways is critical for the generation of contraversive movements and highlights that imbalanced activity between the two projection pathways can result in opposing motor output.
机译:基底神经节,特别是纹状体,牵涉到矛盾运动的产生。纹状体通过两个主要回路投射到下游的基底神经节核,起源于纹状体顶神经和纹状体顶部神经元,并且不同的模型假定这两个通路可以相反或协同作用。在这里,我们显示了纹状体和纹状体神经元在自发的对立运动中同时活跃。此外,我们表明,任一或两个投影路径的单方面光遗传学抑制会破坏对立运动。一致地,两种神经元类型的同时激活产生相反的运动。尽管如此,我们还表明,路径之间的活动不平衡会导致每个投影路径驱动相反的运动。这些数据表明,两个纹状体投射途径中的平衡活动对于产生矛盾运动至关重要,并强调了两个投射途径之间的活动不平衡会导致相反的运动输出。

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