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Contradictory results on the role of polarized light in compass calibration in migratory songbirds

机译:关于偏光在迁徙鸣禽指南针校准中作用的矛盾结果

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Experiments with migrating birds on the interaction between magnetic and celestial cues have produced heterogeneous results. A recent study claimed that the magnetic compass in passerine migrants is calibrated by the pattern of polarized light at sunset and sunrise and that the area just above the horizon is crucial for this calibration. To test the latter hypothesis, we performed a similar experiment with Australian Silvereyes. It produced contrary results, however, the birds, in spite of observing the natural polarization pattern at sunrise and sunset down to the horizon in an altered magnetic field, continued in their normal southerly magnetic direction when subsequently tested in the local geomagnetic field—the conflict between magnetic and polarized light cues had not caused them to recalibrate their magnetic compass. This contradicts the assumption that skylight polarization patterns generally serve as a primary calibration reference for migratory songbirds.
机译:关于鸟类迁移对磁性和天体线索之间相互作用的实验产生了异类结果。最近的一项研究声称,雀形目移民中的磁罗经通过日落和日出时的偏振光模式进行校准,而地平线上方的区域对该校准至关重要。为了检验后一种假设,我们对澳大利亚银眼鱼进行了类似的实验。结果却相反,但是,尽管在变化的磁场中观察到了日出和日落时直到地平线的自然极化模式,但随后在局部地磁场中对其进行测试时,它们仍沿其正常的南磁方向继续飞行。磁和极化光提示之间的差异并未使他们重新校准其磁罗盘。这与天窗偏振模式通常用作迁徙鸣禽的主要校准参考的假设相矛盾。

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