Effective detection and avoidance from environmental threats are crucial for animals' survival. Integration of sensory cues associated with threats across different modalities can significantly enhance animals' detection and behavioral responses. However, the neural circuit-level mechanisms underlying the modulation of defensive behavior or fear response under simultaneous multimodal sensory inputs remain poorly understood. Here, we report in mice that bimodal looming stimuli combining coherent visual and auditory signals elicit more robust defensive/fear reactions than unimodal stimuli. These include intensified escape and prolonged hiding, suggesting a heightened defensive/fear state. These various responses depend on the activity of the superior colliculus (SC), while its downstream nucleus, the parabigeminal nucleus (PBG), predominantly influences the duration of hiding behavior. PBG temporally integrates visual and auditory signals and enhances the salience of threat signals by amplifying SC sensory responses through its feedback projection to the visual layer of the SC. Our results suggest an evolutionarily conserved pathway in defense circuits for multisensory integration and cross-modality enhancement.
Cross-modal enhancement of defensive behavior via parabigemino-collicular projections.
通过副上丘投射增强防御行为的跨模态作用
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作者:Peng Bo, Huang Junxiang J, Li Zhong, Zhang Li I, Tao Huizhong Whit
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2024 | 起止号: | 2024 Aug 19; 34(16):3616-3631 |
| doi: | 10.1016/j.cub.2024.06.052 | ||
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