A magnetic pulse does not affect free-flight navigation behaviour of a medium-distance songbird migrant in spring

Thiemo Karwinkel, M. Winklhofer, Lars Erik Janner, Vera Brust, O. Hüppop, F. Bairlein, Heiko Schmaljohann
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引用次数: 1

Abstract

Current evidence suggests that migratory animals extract map information from the geomagnetic field for true navigation. The sensory basis underlying this feat is elusive, but presumably involves magnetic particles. A common experimental manipulation procedure consists of pre-treating animals with a magnetic pulse. This aims at re-magnetising particles to alter the internal representation of the external field prior to a navigation task. While pulsing provoked deflected bearings in laboratory experiments, analogous studies with free-flying songbirds yielded inconsistent results. Here, we pulsed European robins (Erithacus rubecula), being medium-distance migrants, at an offshore stopover site during spring migration and monitored their free-flight behaviour with a regional-scale tracking system. We found no pulse effect on departure probability, nocturnal departure timing, or departure direction, in agreement with results on a long-distance migrant released at the same site in autumn. This necessitates a reassessment of the importance of geomagnetic maps for migratory decisions for free-flying birds. Summary statement Magnetic pulse pre-treatment disturbs geomagnetic map usage of birds in lab environments. However, our free-flying birds show no effect, suggesting geomagnetic map information is less important in the natural environment.
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磁脉冲不影响春季中距离候鸟的自由飞行导航行为
目前的证据表明,迁徙动物从地磁场中提取地图信息,以实现真正的导航。这一壮举背后的感官基础是难以捉摸的,但可能与磁性粒子有关。一种常见的实验操作程序包括用磁脉冲对动物进行预处理。其目的是在导航任务之前重新磁化粒子以改变外部场的内部表示。虽然脉冲在实验室实验中引起了偏转轴承,但对自由飞行的鸣禽进行的类似研究得出了不一致的结果。在这里,我们对欧洲知更鸟(Erithacus rubecula)进行了脉冲,它们是一种中等距离的候鸟,在春季迁徙期间在海上的中途停留点,并使用区域尺度的跟踪系统监测它们的自由飞行行为。我们没有发现脉冲对离开概率、夜间离开时间或离开方向的影响,这与秋季在同一地点释放的长途候鸟的结果一致。这就需要重新评估地磁图对自由飞行的鸟类迁徙决策的重要性。磁脉冲预处理干扰了实验室环境下鸟类地磁图的使用。然而,我们的自由飞行的鸟没有显示出影响,这表明地磁图信息在自然环境中不太重要。
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