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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Bats respond to polarity of a magnetic field
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Bats respond to polarity of a magnetic field

机译:蝙蝠响应磁场的极性

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Bats have been shown to use information from the Earth's magnetic field during orientation. However, the mechanism underlying this ability remains unknown. In this study we investigated whether bats possess a polarity- or inclination-based compass that could be used in orientation. We monitored the hanging position of adult Nyctalus plancyi in the laboratory in the presence of an induced magnetic field of twice Earth-strength. When under the influence of a normally aligned induced field the bats showed a significant preference for hanging at the northern end of their roosting basket. When the vertical component of the field was reversed, the bats remained at the northern end of the basket. However, when the horizontal component of the field was reversed, the bats changed their positions and hung at the southern end of the basket. Based on these results, we conclude that N. plancyi, unlike all other non-mammalian vertebrates tested to date, uses a polarity-based compass during orientation in the roost, and that the same compass is also likely to underlie bats' long-distance navigation abilities.
机译:蝙蝠在定向过程中被证明会利用来自地球磁场的信息。但是,这种能力的基础机制仍然未知。在这项研究中,我们调查了蝙蝠是否具有可用于定向的基于极性或倾斜度的指南针。我们在存在两倍于地球强度的感应磁场的情况下,在实验室中监测了成年夜蛾的垂悬位置。当受到正常对齐的感应场的影响时,蝙蝠表现出明显的偏爱悬挂在其栖息篮子的北端。当田野的垂直部分反转时,蝙蝠仍留在篮子的北端。但是,当田野的水平方向颠倒时,蝙蝠改变了位置并悬挂在篮子的南端。根据这些结果,我们得出结论,与迄今为止测试的所有其他非哺乳动物脊椎动物不同,浮萍猪笼草在栖息地定向过程中使用基于极性的罗盘,并且同一罗盘也有可能成为蝙蝠长距离飞行的基础导航能力。

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