Bianco Isaac H, Engert Florian
Department of Molecular and Cellular Biology and Center for Brain Science, Harvard University, Cambridge, MA 02138, USA.
Department of Molecular and Cellular Biology and Center for Brain Science, Harvard University, Cambridge, MA 02138, USA.
Curr Biol. 2015 Mar 30;25(7):831-46. doi: 10.1016/j.cub.2015.01.042. Epub 2015 Mar 5.
Visuomotor circuits filter visual information and determine whether or not to engage downstream motor modules to produce behavioral outputs. However, the circuit mechanisms that mediate and link perception of salient stimuli to execution of an adaptive response are poorly understood. We combined a virtual hunting assay for tethered larval zebrafish with two-photon functional calcium imaging to simultaneously monitor neuronal activity in the optic tectum during naturalistic behavior. Hunting responses showed mixed selectivity for combinations of visual features, specifically stimulus size, speed, and contrast polarity. We identified a subset of tectal neurons with similar highly selective tuning, which show non-linear mixed selectivity for visual features and are likely to mediate the perceptual recognition of prey. By comparing neural dynamics in the optic tectum during response versus non-response trials, we discovered premotor population activity that specifically preceded initiation of hunting behavior and exhibited anatomical localization that correlated with motor variables. In summary, the optic tectum contains non-linear mixed selectivity neurons that are likely to mediate reliable detection of ethologically relevant sensory stimuli. Recruitment of small tectal assemblies appears to link perception to action by providing the premotor commands that release hunting responses. These findings allow us to propose a model circuit for the visuomotor transformations underlying a natural behavior.
视觉运动回路过滤视觉信息,并决定是否激活下游运动模块以产生行为输出。然而,介导显著刺激的感知并将其与适应性反应的执行联系起来的神经回路机制仍知之甚少。我们将用于束缚幼虫斑马鱼的虚拟捕猎试验与双光子功能钙成像相结合,以便在自然行为期间同时监测视顶盖中的神经元活动。捕猎反应对视觉特征的组合表现出混合选择性,特别是刺激大小、速度和对比度极性。我们鉴定出一组具有相似高度选择性调谐的顶盖神经元,它们对视觉特征表现出非线性混合选择性,并且可能介导对猎物的感知识别。通过比较反应试验和无反应试验期间视顶盖中的神经动力学,我们发现了运动前群体活动,它特别先于捕猎行为的启动,并表现出与运动变量相关的解剖学定位。总之,视顶盖包含非线性混合选择性神经元,它们可能介导对行为学相关感觉刺激的可靠检测。小顶盖神经元集群的募集似乎通过提供释放捕猎反应的运动前指令将感知与行动联系起来。这些发现使我们能够提出一个自然行为背后视觉运动转换的模型回路。