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Polarized skylight does not calibrate the compass system of a migratory bat

机译:偏光天窗无法校准候补蝙蝠的罗盘系统

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摘要

In a recent study, Greif et al. (2014) demonstrated a functional role of polarized light for a bat species confronted with a homing task. These non-migratory bats appeared to calibrate their magnetic compass by using polarized skylight at dusk, yet it is unknown if migratory bats also use these cues for calibration. During autumn migration, we equipped Nathusius' bats, Pipistrellus nathusii, with radio transmitters and tested if experimental animals exposed to a 90° rotated band of polarized light during dusk, would head in a different direction compared with control animals. After release, bats of both groups continued their journey in the same direction. This observation argues against the use of a polarization-calibrated magnetic compass by this migratory bat and questions that the ability of using polarized light for navigation is a consistent feature in bats. This finding matches with observations in some passerine birds that used polarized light for calibration of their magnetic compass before but not during migration.
机译:在最近的研究中,Greif等人。 (2014)证明了偏振光对蝙蝠物种的归巢任务的功能作用。这些非迁移性蝙蝠似乎是在黄昏时使用偏光天窗来校准其磁罗盘的,但是尚不清楚迁移蝙蝠是否也使用这些提示进行校准。在秋季迁徙期间,我们为Nathusius的蝙蝠Pipistrellus nathusii配备了无线电发射器,并测试了实验动物在黄昏期间暴露于90°旋转的偏振光带中是否会与对照动物朝不同的方向前进。释放后,两组蝙蝠都朝着同一方向继续前进。该观察结果反对这种迁徙蝙蝠使用极化校准的磁罗盘,并质疑将极化光用于导航的能力在蝙蝠中是一致的特征。这一发现与某些雀形目鸟类的观察结果相吻合,这些雀形目鸟类在迁徙之前但未在迁徙过程中使用偏振光对其磁罗经进行校准。

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