首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Avian orientation at steep angles of inclination: experiments with migratory white-crowned sparrows at the magnetic North Pole
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Avian orientation at steep angles of inclination: experiments with migratory white-crowned sparrows at the magnetic North Pole

机译:禽类在陡峭的倾斜角度上的定向:在磁性北极上用迁徙的白冠麻雀进行实验

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摘要

The Earth's magnetic field and celestial cues provide animals with compass information during migration. Inherited magnetic compass courses are selected based on the angle of inclination, making it difficult to orient in the near vertical fields found at high geomagnetic latitudes. Orientation cage experiments were performed at different sites in high Arctic Canada with adult and young white-crowned sparrows (Zonotrichia leucophrys gambelii) in order to investigate birds' ability to use the Earth's magnetic field and celestial cues for orientation in naturally very steep magnetic fields at and close to the magnetic North Pole. Experiments were performed during the natural period of migration at night in the local geomagnetic field under natural clear skies and under simulated total overcast conditions. The experimental birds failed to select a meaningful magnetic compass course under overcast conditions at the magnetic North Pole, but could do so in geomagnetic fields deviating less than 3° from the vertical. Migratory orientation was successful at all sites when celestial cues were available.
机译:在迁移过程中,地球的磁场和天体线索为动物提供了指南针信息。根据倾斜角度选择继承的磁罗盘路线,这使得很难在高地磁纬度的垂直场中进行定向。在加拿大高海拔地区的不同地点进行了成年和幼小白冠麻雀(Zonotrichia leucophrys gambelii)定向笼实验,以研究鸟类利用地球磁场和天体线索在自然非常陡峭的磁场中定向的能力。并靠近磁性北极。在自然晴朗的天空和模拟的总阴云条件下,在当地地磁场的夜间自然迁移过程中进行了实验。实验鸟类无法在磁性北极条件下选择有意义的磁性罗盘路线,但是可以在偏离垂直方向小于3°的地磁场中进行选择。当有天体线索时,所有地方的迁徙定向都是成功的。

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