首页> 外文期刊>The Journal of Experimental Biology >Conditioned discrimination of magnetic inclination in a spatial-orientation arena task by homing pigeons (Columba livia)
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Conditioned discrimination of magnetic inclination in a spatial-orientation arena task by homing pigeons (Columba livia)

机译:通过归巢鸽对空间定向竞技场任务中的磁倾角进行有条件的区分(Columba livia)

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摘要

It has been well established that homing pigeons are able to use the Earth's magnetic field to obtain directional information when returning to their loft and that their magnetic compass is based, at least in part, on the perception of magnetic inclination. Magnetic inclination has also been hypothesized in pigeons and other long-distance navigators, such as sea turtles, to play a role providing positional information as part of a map. Here we developed a behavioral paradigm which allows us to condition homing pigeons to discriminate magnetic inclination cues in a spatial-orientation arena task. Six homing pigeons were required to discriminate in a circular arena between feeders located either in a zone with a close to 0 deg inclination cue or in a zone with a rapidly changing inclination cue (-3 deg to +85 deg when approaching the feeder and +85 deg to -3 deg when moving away from the feeder) to obtain a food reward. The pigeons consistently performed this task above chance level. Control experiments, during which the coils were turned off or the current was running anti-parallel through the double-wound coil system, confirmed that no alternative cues were used by the birds in the discrimination task. The results show that homing pigeons can be conditioned to discriminate differences in magnetic field inclination, enabling investigation into the peripheral and central neural processing of geomagnetic inclination under controlled laboratory conditions.
机译:众所周知,归巢的鸽子在返回鸽舍时能够利用地球的磁场获取方向信息,并且它们的磁罗盘至少部分基于对磁倾角的感知。鸽子和其他长途导航员(例如海龟)中也假设存在磁倾角,以提供位置信息作为地图的一部分。在这里,我们开发了一种行为范式,它使我们可以对归巢的鸽子进行调节,从而在空间定向竞技场任务中区分出磁倾角线索。需要六只归巢的鸽子在圆形竞技场中区分位于接近0度倾斜提示的区域或位于具有快速变化的倾斜提示的区域(接近馈入器时从-3度到+85度)和位于+从进纸器移开时在85度到-3度的范围内获得食物奖励。鸽子始终在机会级别以上执行此任务。在关闭线圈或电流通过双绕线圈系统反并联运行的对照实验中,确认家禽在识别任务中未使用其他提示。结果表明,可以对归巢的鸽子进行调节,以区分磁场倾角的差异,从而能够在受控实验室条件下研究地磁倾角的外围和中央神经处理过程。

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