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首页> 外文期刊>Nature Communications >Tuneable reflexes control antennal positioning in flying hawkmoths
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Tuneable reflexes control antennal positioning in flying hawkmoths

机译:可调反射控制天线定位在飞鹰飞蛾

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摘要

Complex behaviours may be viewed as sequences of modular actions, each elicited by specific sensory cues in their characteristic timescales. From this perspective, we can construct models in which unitary behavioural modules are hierarchically placed in context of related actions. Here, we analyse antennal positioning reflex in hawkmoths as a tuneable behavioural unit. Mechanosensory feedback from two antennal structures, B?hm's bristles (BB) and Johnston's organs (JO), determines antennal position. At flight onset, antennae attain a specific position, which is maintained by feedback from BB. Simultaneously, JO senses deflections in flagellum-pedicel joint due to frontal airflow, to modulate its steady-state position. Restricting JO abolishes positional modulation but maintains stability against perturbations. Linear feedback models are sufficient to predict antennal dynamics at various set-points. We modelled antennal positioning as a hierarchical neural-circuit in which fast BB feedback maintains instantaneous set-point, but slow JO feedback modulates it, thereby elucidating mechanisms underlying its robustness and flexibility.
机译:复杂行为可以被视为模块化动作的序列,每个动作被特定的感觉线索引发其特征时间尺寸。从这个角度来看,我们可以构建一个模型,其中酉行为模块在相关动作的上下文中被分层地放置。在这里,我们将霍基马斯的抗天性定位反射分析为可调行为单位。来自两个抗体结构的机械感性反馈,B?HM的刷毛(BB)和Johnston的器官(JO),决定了抗天度位置。在飞行发作时,天线达到特定位置,该位置由BB的反馈维护。同时,jo感测由于正面气流引起的鞭毛 - 平行接头中的偏转,以调制其稳态位置。限制Jo废除位置调制,但保持稳定性的扰动。线性反馈模型足以预测各种设定点的抗弯动力学。我们将抗天度定位建模为分层神经电路,其中快速BB反馈保持瞬时设定点,但是慢的JO反馈调制它,从而阐明其鲁棒性和灵活性的基础。

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