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首页> 外文期刊>The Journal of Experimental Biology >Conditioning to magnetic direction in the Pekin duck (Anas platyrhynchos domestica)
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Conditioning to magnetic direction in the Pekin duck (Anas platyrhynchos domestica)

机译:在北京烤鸭中对磁性方向的调节(Anas platyrhynchos domestica)

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The ability of ducks to derive magnetic direction information was tested in a conditioned procedure and the functional properties of the mechanism of magnetoreception investigated using common manipulations. Twelve ducks were trained to find a hidden imprinting stimulus behind one of three screens in a round arena. Once a criterion was reached, the directional choices of ducks were recorded in four treatments presented in a random order, separated with rewarded training trials to avoid extinction. In tests in the geomagnetic field, ducks preferred the screen in the training direction (P=0.005). In the crucial tests of magnetic orientation with the magnetic field experimentally shifted by 120 deg, ducks showed a significant difference in the choice for the correct magnetic direction between treatments (P=0.002). More specifically, they chose the correct magnetic direction more often than expected by chance (P=0.03), indicating that they were deriving directional information from the magnetic field. Ducks also chose the correct magnetic direction more often than expected by chance in tests with the shifted field after the upper bill was anaesthetised with lignocaine (P=0.05) or when the right eye was covered (P=0.005), indicating that these manipulations did not impair the ability to choose the correct magnetic direction. Thus, Pekin ducks can be conditioned to magnetic directions, and the results are consistent with the hypothesis that magnetic orientation is based on a chemical magnetoreception mechanism that is not restricted to the right eye.
机译:在一个条件程序中测试了鸭子得出磁方向信息的能力,并使用常规操作研究了磁接收机理的功能特性。训练了十二只鸭子,以在圆形竞技场的三个屏幕之一的后面找到隐藏的印记刺激。一旦达到标准,鸭子的方向选择就会以随机顺序记录在四种治疗中,并与奖励训练试验分开进行以避免灭绝。在地磁场测试中,鸭子偏爱训练方向的屏幕(P = 0.005)。在磁性定向的关键测试中,实验将磁场移动了120度,鸭子在两次治疗之间的正确磁方向选择上显示出显着差异(P = 0.002)。更具体地说,他们选择正确的磁方向的频率要比偶然预期的要高(P = 0.03),这表明他们是从磁场中获取方向信息的。在使用利尼卡因麻醉上颚(P = 0.05)或遮盖右眼(P = 0.005)后,在移位后的磁场测试中,鸭子也比偶然地选择正确的磁性方向更多,这表明这些操作确实不会影响选择正确的磁方向的能力。因此,北京鸭可以适应磁性方向,其结果与以下假设相符:磁性方向是基于不限于右眼的化学磁接收机制的。

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