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神经元对社会性动作的检测指导集体逃逸行为

Nature · 2026年9月23日 · Yu 等 5 位作者

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一分钟了解要点玻璃鱼靠视觉识别同伴逃逸动作,中脑神经元编码这种社会信息。结果中脑视顶盖和丘脑的视觉神经元在虚拟同伴逃逸或突然消失时活动增强,但对非生物性的直线运动消失无反应。

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Animals in groups obtain information from social partners to engage in adaptive behaviour1-3. Social information transmission is observed in fish schools4-6, bird flocks7,8 and human groups9,10, but the neural representation of such socially acquired information is poorly understood3,11,12. Here we show that, in the schooling glassfish Danionella cerebrum13-15, collective escape from danger can be mediated by an individual's visual perception of other escaping animals. To understand the neural basis of socially transmitted escape behaviour, we imaged neural activity from adult glassfish viewing the actions of virtual conspecifics. Visual neurons in the midbrain optic tectum16,17 and thalamus18 increased their activity when virtual conspecifics escaped. Escape-responsive neurons also responded to the sudden disappearance of virtual fish, yet were unaffected by the disappearance of stimuli moving with non-biological linear motion. Behaviourally, fish retreated from virtual schools that escaped or disappeared, but only those swimming with biological burst-and-glide motion. Neural encoding of this rapid social offset allows fish to infer danger from social information alone, a potentially effective strategy for animals that are capable of rapid movement but have a limited visual range14,19. These results show how the neural computations of individuals enable rapid information sharing in collectives.

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