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Control of visually guided behavior by distinct populations of spinal projection neurons

机译:通过不同的脊柱投射神经元群控制视觉引导的行为

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摘要

A basic question in the field of motor control is how different actions are represented by activity in spinal projection neurons. We used a new behavioral assay to identify visual stimuli that specifically drive basic motor patterns in zebrafish. These stimuli evoked consistent patterns of neural activity in the neurons projecting to the spinal cord, which we could map throughout the entire population using in vivo two−photon calcium imaging. We found that stimuli that drive distinct behaviors activated distinct subsets of projection neurons, consisting, in some cases, of just a few cells. This stands in contrast to the distributed activation seen for more complex behaviors. Furthermore, targeted cell by cell ablations of the neurons associated with evoked turns abolished the corresponding behavioral response. This description of the functional organization of the zebrafish motor system provides a framework for identifying the complete circuit underlying a vertebrate behavior.
机译:运动控制领域的一个基本问题是脊柱投射神经元的活动如何代表不同的动作。我们使用了一种新的行为分析来识别视觉刺激,该视觉刺激专门驱动斑马鱼的基本运动模式。这些刺激在投射到脊髓的神经元中引起了一致的神经活动模式,我们可以使用体内双光子钙成像在整个人群中进行映射。我们发现,驱动不同行为的刺激激活了投射神经元的不同子集,在某些情况下,这些子集仅由几个细胞组成。这与看到更复杂行为的分布式激活相反。此外,与诱发的转弯相关的神经元的逐个细胞消融消除了相应的行为反应。斑马鱼运动系统功能组织的描述为识别脊椎动物行为的完整电路提供了框架。

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