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首页> 外文期刊>Nature neuroscience >A subcortical excitatory circuit for sensory-triggered predatory hunting in mice
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A subcortical excitatory circuit for sensory-triggered predatory hunting in mice

机译:小鼠感官触发捕食性捕食性捕捉的皮序兴奋回路

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Predatory hunting plays a fundamental role in animal survival. Little is known about the neural circuits that convert sensory cues into neural signals to drive this behavior. Here we identified an excitatory subcortical neural circuit from the superior col-liculus to the zona incerta that triggers predatory hunting. The superior colliculus neurons that form this pathway integrate motion-related visual and vibrissal somatosensory cues of prey. During hunting, these neurons send out neural signals that are temporally correlated with predatory attacks, but not with feeding after prey capture. Synaptic inactivation of this pathway selectively blocks hunting for prey without impairing other sensory-triggered behaviors. These data reveal a subcortical neural circuit that is specifically engaged in translating sensory cues into neural signals to provoke predatory hunting.
机译:掠夺性狩猎在动物生存中起着基本作用。 关于将感觉线索转换为神经信号以驱动这种行为的神经电路知之甚少。 在这里,我们将来自优越的Col-LiCulus的兴奋性解剖神经电路识别到触发捕食性狩猎的Zona Incerta。 形成该途径的高级小集性神经元整合了与猎物的运动相关的视觉和vibrissal躯体感应卷。 在狩猎期间,这些神经元发出了与掠夺性攻击时关的神经信号,但在猎物捕获后没有喂食。 该途径的突触失活选择性地阻止猎物的狩猎而不会损害其他感觉触发的行为。 这些数据揭示了一个细制的神经电路,该神经电路专门从事将感觉线索翻译成神经信号以引发捕食性狩猎。

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