首页> 外文期刊>The Journal of Experimental Biology >Ontogeny of the star compass in birds: pied flycatchers (Ficedula hypoleuca) can establish the star compass in spring
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Ontogeny of the star compass in birds: pied flycatchers (Ficedula hypoleuca) can establish the star compass in spring

机译:在鸟类中的明星指南针的组织发生:染色捕蝇器(费奇拉·倍络伞)可以在春天建立明星指南针

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摘要

The star compass of birds, like the sun compass, is not innate. To possess either of them, birds have to observe the rotating sky and determine its centre of rotation (in the case of the star compass) or the sun's movement (for the sun compass). Young birds are believed to learn how to use the star compass before their first migration, even though the evidence of this is lacking. Here, we tested whether handraised Pied flycatchers (Ficedula hypoleuca) that had not established the star compass prior to their first autumn migration can gain it later in their ontogeny, in spring. We also attempted to examine whether the observation of diurnal celestial cues (the sun and polarized light) prior to autumn migration would affect the process of star compass learning in spring. When tested in the vertical magnetic field under the natural starry sky, the group of birds that observed the stars in spring as the first celestial cues were able to choose the migratory direction. In contrast, the birds that had never seen the stars were not able to use the nightly celestial cues in the vertical magnetic field. However, birds that had seen the daytime celestial cues till autumn and the stars at spring were disoriented, although this might be due to the small sample size. Our data suggest the possibility that the star compass may be learned in spring and emphasize the necessity for further research into the interaction of celestial compasses.
机译:鸟类的星罗盘和太阳罗盘一样,不是天生的。鸟类要想拥有这两者中的任何一种,都必须观察旋转的天空,并确定其旋转中心(对于恒星罗盘而言)或太阳的运动(对于太阳罗盘而言)。据信,幼鸟在第一次迁徙之前就学会了如何使用星罗盘,尽管缺乏证据。在这里,我们测试了在第一次秋季迁徙之前没有建立星罗盘的手养花斑捕蝇器(Ficedula hypoleuca)是否可以在春季个体发育的后期获得星罗盘。我们还试图检验在秋季迁徙之前观测到的白天天体线索(太阳和偏振光)是否会影响春季的恒星罗盘学习过程。当在自然星空下的垂直磁场中进行测试时,观察春天星星作为第一个天体线索的鸟类能够选择迁徙方向。相比之下,从未见过恒星的鸟类无法在垂直磁场中使用夜间的天体线索。然而,在秋季之前看到白天天象的鸟类和在春季看到星星的鸟类都迷失了方向,尽管这可能是因为样本量小。我们的数据表明,恒星罗盘可能在春季学习,并强调了进一步研究天体罗盘相互作用的必要性。

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