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Weak broadband electromagnetic fields are more disruptive to magnetic compass orientation in a night-migratory songbird (Erithacus rubecula) than strong narrow-band fields

机译:较弱的窄带场,较弱的宽带电磁场对夜间迁移的鸣禽(Erithacus rubecula)中的磁罗盘方向更具破坏性

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摘要

Magnetic compass orientation in night-migratory songbirds is embedded in the visual system and seems to be based on a light-dependent radical pair mechanism. Recent findings suggest that both broadband electromagnetic fields ranging from ~2 kHz to ~9 MHz and narrow-band fields at the so-called Larmor frequency for a free electron in the Earth’s magnetic field can disrupt this mechanism. However, due to local magnetic fields generated by nuclear spins, effects specific to the Larmor frequency are difficult to understand considering that the primary sensory molecule should be organic and probably a protein. We therefore constructed a purpose-built laboratory and tested the orientation capabilities of European robins in an electromagnetically silent environment, under the specific influence of four different oscillating narrow-band electromagnetic fields, at the Larmor frequency, double the Larmor frequency, 1.315 MHz or 50 Hz, and in the presence of broadband electromagnetic noise covering the range from ~2 kHz to ~9 MHz. Our results indicated that the magnetic compass orientation of European robins could not be disrupted by any of the relatively strong narrow-band electromagnetic fields employed here, but that the weak broadband field very efficiently disrupted their orientation.
机译:夜间迁徙鸣禽中的磁罗盘方向已嵌入到视觉系统中,并且似乎基于与光有关的自由基对机制。最近的发现表明,从2 kHz到9 MHz的宽带电磁场和地球磁场中自由电子的所谓拉莫尔频率的窄带场都可以破坏这种机制。然而,由于核自旋产生的局部磁场,考虑到主要的感觉分子应该是有机的并且可能是蛋白质,因此难以理解拉莫尔频率所特有的作用。因此,我们建立了一个专门的实验室,并在四种不同的振荡窄带电磁场的特定影响下,在电磁静默环境中测试了欧洲知更鸟的定向能力,拉莫尔频率为拉莫尔频率的两倍,1.315 MHz或50 Hz,并且存在范围从〜2 kHz到〜9 MHz的宽带电磁噪声。我们的结果表明,此处使用的任何相对强的窄带电磁场都不会破坏欧洲知更鸟的磁罗盘方向,但是弱的宽带场却非常有效地破坏了它们的方向。

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    Hore, PJ;

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