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Clock-shift experiments with homing pigeons: a compromise between solarand magnetic information?

机译:鸽子的时移实验:太阳能和磁信息之间的折衷?

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In adult homing pigeons, the deflections induced by a 6-h clock-shift are often markedly smaller than predicted on the basis of the difference in sun azimuth. To look for possible reasons, we performed clockshift experiments with adult pigeons, releasing birds with small bar magnets that interfered with their magnetic compass. Initial orientation and homing performance of control birds living in the natural photoperiod were not affected by the magnets in any way. Otherwise untreated pigeons whose internal clock had been reset by 6 h showed deflections that were about 60% of the predicted size. Brass bars did not affect the behavior of the clock-shifted birds. Magnets, however, increased the deflection significantly to about 90% of the predicted size; in the majority of releases, the confidence interval of the clock-shifted birds with magnets included the expected direction. These findings suggest that the reduced deflections observed in adult pigeons are to be attributed to the pigeons' use of their magnetic compass: when pigeons locate their home course, they seem to combine directional information from the sun compass with information from the geomagnetic field.
机译:在成年归巢鸽中,由6小时时钟偏移引起的偏转通常明显小于根据太阳方位角的差异所预测的偏转。为了寻找可能的原因,我们对成年鸽进行了时移实验,用小条形磁铁释放会干扰其磁罗盘的鸟。生活在自然光周期中的对照鸟的初始方向和归巢性能不受磁铁的任何影响。否则,未经处理的鸽子其内部时钟已被重置6小时的鸽子,其挠度约为预期大小的60%。黄铜棒不影响钟表鸟的行为。但是,磁铁的挠度明显增加到了预计尺寸的90%。在大多数版本中,带磁铁的时移鸟的置信区间包括预期方向。这些发现表明,成年鸽子观察到的挠度降低归因于鸽子使用了磁罗盘:当鸽子找到自己的归巢路线时,它们似乎将太阳罗盘的方向信息与地磁场的信息相结合。

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