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Neural Integration Underlying a Time-Compensated Sun Compass in the Migratory Monarch Butterfly

机译:帝王蝶的时间补偿太阳罗盘背后的神经整合

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Migrating eastern North American monarch butterflies use a time-compensated sun compass to adjust their flight to the southwest direction. Although the antennal genetic circadian clock and the azimuth of the sun are instrumental for proper function of the compass, it is unclear how these signals are represented on a neuronal level and how they are integrated to produce flight control. To address these questions, we constructed a receptive field model of the compound eye that encodes the solar azimuth. We then derived a neural circuit model that integrates azimuthal and circadian signals to correct flight direction. The model demonstrates an integration mechanism, which produces robust trajectories reaching the southwest regardless of the time of day and includes a configuration for remigration. Comparison of model simulations with flight trajectories of butterflies in a flight simulator shows analogous behaviors and affirms the prediction that midday is the optimal time for migratory flight.
机译:迁徙到北美东部的帝王蝶使用时间补偿的太阳罗盘来调整其向西南方向的飞行。尽管触角遗传生物钟和太阳方位有助于指南针的正常运行,但尚不清楚这些信号如何在神经元水平上表示以及如何整合以产生飞行控制。为了解决这些问题,我们构建了编码太阳方位角的复眼的接收场模型。然后,我们导出了一个神经回路模型,该模型整合了方位角和昼夜节律信号以纠正飞行方向。该模型演示了一种集成机制,该机制可以生成到达西南的健壮轨迹,而与一天中的任何时间无关,并且包括用于迁移的配置。在飞行模拟器中,将模型模拟与蝴蝶的飞行轨迹进行比较,可以得出类似的行为,并肯定了中午是迁徙最佳时间的预测。

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