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Magnetic compass of migratory Savannah sparrows is calibrated by skylight polarization at sunrise and sunset

机译:迁徙的大草原麻雀的磁罗经通过日出和日落时的天窗极化进行校准

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Migratory birds use compass systems derived from the geomagnetic field, the stars, the sun and polarized light patterns. We tested whether birds use a single underlying reference system for calibration of these compasses and, specifically, whether sunset and sunrise polarized light cues from the region of the sky near the horizon are used to calibrate the magnetic compass. We carried out orientation experiments with Savannah sparrows, Passerculus sandwichensis, in Alaska during autumn migration 2005, and compared the magnetic orientations of individual birds before and after exposure to conflicting information between magnetic and celestial cues. Birds exposed to an artificially shifted polarization pattern (±90° shift relative to the natural condition) for 1 h at local sunrise or sunset recalibrated their magnetic compass, but only when given access to the artificial polarization pattern near the horizon. Birds exposed to a 90° clockwise-shifted magnetic field for 1 h at solar noon did not recalibrate their magnetic compass. These results indicate that migratory birds calibrate their magnetic compass using the skylight polarization pattern vertically intersecting the horizon at sunrise and sunset. In conjunction with earlier work showing that sun and star compass calibrations are secondarily derived from magnetic and polarized light cues, our findings suggest that polarized light cues near the horizon at sunrise and sunset provide the primary calibration reference for the compass systems of migratory songbirds.
机译:候鸟使用来自地磁场,恒星,太阳和偏振光模式的罗盘系统。我们测试了鸟类是否使用单个基础参考系统来校准这些指南针,特别是,是否使用来自地平线附近天空区域的日落和日出偏振光提示来校准电磁罗盘。我们在2005年秋季迁徙期间对阿拉斯加的Savannah麻雀(Passerculuswichensis)进行了定向实验,并比较了暴露于磁和天球线索之间冲突信息之前和之后单个鸟类的磁定向。鸟类在局部日出或日落时暴露于人工偏移的极化模式(相对于自然条件为±90°偏移)达1 h时,会重新校准其磁罗盘,但前提是必须在接近地平线的情况下才能使用人工极化模式。在太阳正午时,将禽类暴露于顺时针旋转90°磁场1小时,并没有重新校准其磁罗盘。这些结果表明,候鸟使用日出和日落时与地平线垂直相交的天光极化图案来校准其磁罗盘。结合先前的工作表明太阳和星罗盘校准是次要来自磁性和偏振光提示,我们的研究结果表明,日出和日落时地平线附近的偏振光提示为迁徙鸣禽的罗盘系统提供了主要的校准参考。

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