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Detection of Magnetic Field Intensity Gradient by Homing Pigeons (Columba livia) in a Novel Virtual Magnetic Map Conditioning Paradigm

机译:新型虚拟磁图条件范式中的归巢鸽(Columba livia)检测磁场强度梯度

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摘要

It has long been thought that birds may use the Earth's magnetic field not only as a compass for direction finding, but that it could also provide spatial information for position determination analogous to a map during navigation. Since magnetic field intensity varies systematically with latitude and theoretically could also provide longitudinal information during position determination, birds using a magnetic map should be able to discriminate magnetic field intensity cues in the laboratory. Here we demonstrate a novel behavioural paradigm requiring homing pigeons to identify the direction of a magnetic field intensity gradient in a “virtual magnetic map” during a spatial conditioning task. Not only were the pigeons able to detect the direction of the intensity gradient, but they were even able to discriminate upward versus downward movement on the gradient by differentiating between increasing and decreasing intensity values. Furthermore, the pigeons typically spent more than half of the 15 second sampling period in front of the feeder associated with the rewarded gradient direction indicating that they required only several seconds to make the correct choice. Our results therefore demonstrate for the first time that pigeons not only can detect the presence and absence of magnetic anomalies, as previous studies had shown, but are even able to detect and respond to changes in magnetic field intensity alone, including the directionality of such changes, in the context of spatial orientation within an experimental arena. This opens up the possibility for systematic and detailed studies of how pigeons could use magnetic intensity cues during position determination as well as how intensity is perceived and where it is processed in the brain.
机译:长期以来,人们一直认为鸟类不仅可以将地球的磁场用作寻找方向的指南针,而且还可以提供类似于导航期间的地图位置确定的空间信息。由于磁场强度会随着纬度而系统地变化,并且理论上也可以在确定位置时提供纵向信息,因此使用磁图的鸟类应该能够区分实验室中的磁场强度提示。在这里,我们演示了一种新颖的行为范式,它要求归巢的鸽子在空间调节任务期间识别“虚拟磁图”中磁场强度梯度的方向。鸽子不仅能够检测强度梯度的方向,而且还可以通过区分强度值的增加和减少来区分梯度上的向上运动与向下运动。此外,鸽子通常在进给器前面花费15秒采样周期的一半以上,这与奖励的梯度方向相关,这表明它们只需要几秒钟就可以做出正确的选择。因此,我们的结果首次证明,鸽子不仅可以检测到是否存在磁异常(如先前的研究所示),而且甚至能够单独检测并响应磁场强度的变化,包括这种变化的方向性,在实验领域内进行空间定位时。这为系统和详细研究鸽子在位置确定过程中如何利用磁性强度提示以及如何感知强度以及在大脑中对其进行处理的可能性提供了可能性。

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  • 总页数 17
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