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Very weak oscillating magnetic field disrupts the magnetic compass of songbird migrants

机译:极弱的振荡磁场破坏了鸣禽的磁性罗盘

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摘要

Previously, it has been shown that long-distance migrants, garden warblers (Sylvia borin), were disoriented in the presence of narrow-band oscillating magnetic field (1.403 MHz OMF, 190 nT) during autumn migration. This agrees with the data of previous experiments with European robins (Erithacus rubecula). In this study, we report the results of experiments with garden warblers tested under a 1.403 MHz OMF with various amplitudes (∼0.4, 1, ∼2.4, 7 and 20 nT). We found that the ability of garden warblers to orient in round arenas using the magnetic compass could be disrupted by a very weak oscillating field, such as an approximate 2.4, 7 and 20 nT OMF, but not by an OMF with an approximate 0.4 nT amplitude. The results of the present study indicate that the sensitivity threshold of the magnetic compass to the OMF lies around 2–3 nT, while in experiments with European robins the birds were disoriented in a 15 nT OMF but could choose the appropriate migratory direction when a 5 nT OMF was added to the stationary magnetic field. The radical-pair model, one of the mainstream theories of avian magnetoreception, cannot explain the sensitivity to such a low-intensity OMF, and therefore, it needs further refinement.
机译:以前的研究表明,在秋季迁徙期间,存在窄带振荡磁场(1.403 MHz OMF,190 nT)的情况下,长途迁徙者花园莺(Sylvia borin)迷失了方向。这与欧洲知更鸟(Erithacus rubecula)先前实验的数据一致。在这项研究中,我们报告了在1.403 MHz OMF下以各种幅度(〜0.4、1,〜2.4、7和20 nT)测试的花园莺的实验结果。我们发现,花园莺使用电磁罗盘在圆形舞台上定向的能力可能会被非常弱的振荡场(例如大约2.4、7和20 nT OMF)破坏,但不会被振幅大约为0.4 nT的OMF破坏。 。本研究的结果表明,磁罗盘对OMF的敏感度阈值约为2-3 nT,而在欧洲知更鸟的实验中,鸟类在15 nT OMF方向上迷失了方向,但当5时,可以选择合适的迁徙方向。将nT OMF添加到固定磁场中。自由基对模型是禽类磁感受的主流理论之一,无法解释对这种低强度OMF的敏感性,因此需要进一步完善。

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