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Re-calibration of the magnetic compass in hand-raised European robins (Erithacus rubecula)

机译:重新校准手养的欧洲知更鸟(Erithacus rubecula)中的电磁罗盘

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摘要

Migratory birds can use a variety of environmental cues for orientation. A primary calibration between the celestial and magnetic compasses seems to be fundamental prior to a bird’s first autumn migration. Releasing hand-raised or rescued young birds back into the wild might therefore be a problem because they might not have established a functional orientation system during their first calendar year. Here, we test whether hand-raised European robins that did not develop any functional compass before or during their first autumn migration could relearn to orient if they were exposed to natural celestial cues during the subsequent winter and spring. When tested in the geomagnetic field without access to celestial cues, these birds could orient in their species-specific spring migratory direction. In contrast, control birds that were deprived of any natural celestial cues throughout remained unable to orient. Our experiments suggest that European robins are still capable of establishing a functional orientation system after their first autumn. Although the external reference remains speculative, most likely, natural celestial cues enabled our birds to calibrate their magnetic compass. Our data suggest that avian compass systems are more flexible than previously believed and have implications for the release of hand-reared migratory birds.
机译:候鸟可以使用各种环境线索进行定向。天体和磁罗盘之间的初步校准似乎是鸟类首次秋季迁徙之前的基础。因此,将人工饲养或营救的幼鸟放回野外可能会成为一个问题,因为它们可能在第一个日历年就没有建立功能定位系统。在这里,我们测试了在随后的冬季和春季暴露于自然天体信号的情况下,在第一次秋季迁徙之前或期间没有发展出任何功能指南针的手工举起的欧洲知更鸟是否可以重新定向。当在地磁场中进行测试而没有获得天体信号时,这些鸟类可能会朝着特定物种的春季迁徙方向定向。相反,被剥夺了任何自然天体线索的对照鸟仍然无法定向。我们的实验表明,欧洲知更鸟在第一个秋天后仍然能够建立功能定位系统。尽管外部参考仍然具有推测性,但很可能自然天体的提示使我们的鸟类能够校准其磁罗盘。我们的数据表明,禽类罗盘系统比以前认为的更灵活,对释放人工饲养的候鸟有影响。

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