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Tracking pigeons in a magnetic anomaly and in magnetically quiet terrain

机译:在磁性异常和磁性安静的地形中跟踪鸽子

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摘要

Pigeons were released at two sites of equal distance from the loft, one within a magnetic anomaly, the other in magnetically quiet terrain, and their tracks were recorded with the help of GPS receivers. A comparison of the beginning of the tracks revealed striking differences: within the anomaly, the initial phase lasted longer, and the distance flown was longer, with the pigeons' headings considerably farther from the home direction. During the following departure phase, the birds were well homeward oriented at the magnetically quiet site, whereas they continued to be disoriented within the anomaly. Comparing the tracks in the anomaly with the underlying magnetic contours shows considerable differences between individuals, without a common pattern emerging. The differences in magnetic intensity along the pigeons' path do not differ from a random distribution of intensity differences around the release site, indicating that the magnetic contours do not directly affect the pigeons' routes. Within the anomaly, pigeons take longer until their flights are oriented, but 5 km from the release point, the birds, still within the anomaly, are also significantly oriented in the home direction. These findings support the assumption that magnetically anomalous conditions initially interfere with the pigeons' navigational processes, with birds showing rather individual responses in their attempts to overcome these problems.Electronic supplementary materialThe online version of this article (doi:10.1007/s00114-011-0802-3) contains supplementary material, which is available to authorized users.
机译:鸽子在离鸽舍等距离的两个地点被释放,一个地点在磁异常区域内,另一个地点在磁寂地形中,并借助GPS接收器记录了它们的踪迹。对赛道起点的比较显示出了惊人的差异:在异常情况下,初始阶段持续的时间更长,飞行距离也更长,鸽子的航向距离原籍方向更远。在接下来的起飞阶段,这些鸟在磁性安静的位置朝着正确的方向飞行,而在异常区域内它们继续迷失方向。将异常中的磁道与下面的磁等值线进行比较,发现个体之间存在相当大的差异,而没有出现共同的模式。沿着鸽子路径的磁场强度差异与释放地点周围的强度差异的随机分布没有差异,这表明磁场轮廓不会直接影响鸽子的路线。在异常情况下,鸽子需要更长的时间才能确定其飞行方向,但是距离释放点5公里,仍处于异常状态的鸟也明显朝着原点方向飞行。这些发现支持这样的假设,即磁异常条件最初会干扰鸽子的航行过程,鸟类在克服这些问题的尝试中表现出相当个人的响应。电子补充材料本文的在线版本(doi:10.1007 / s00114-011-0802) -3)包含补充材料,授权用户可以使用。

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