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作者信息

Wiltschko Roswitha

机构信息

FB Biowissenschaften, Goethe-Universität Frankfurt, Biologicum, Max von Laue-Str. 13, 60438, Frankfurt am Main, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Jul;203(6-7):455-463. doi: 10.1007/s00359-017-1160-1. Epub 2017 Mar 14.

Abstract

Experiments with migrating birds displaced during autumn migration outside their normal migration corridor reveal two different navigational strategies: adult migrants compensate for the displacement, and head towards their traditional wintering areas, whereas young first-time migrants continue in their migratory direction. Young birds are guided to their still unknown goal by a genetically coded migration program that indicates duration and direction(s) of the migratory flight by controlling the amount of migratory restlessness and the compass course(s) with respect to the geomagnetic field and celestial rotation. Adult migrants that have already wintered and are familiar with the goal area approach the goal by true navigation, specifically heading towards it and changing their course correspondingly after displacement. During their first journey, young birds experience the distribution of potential navigational factors en route and in their winter home, which allows them to truly navigate on their next migrations. The navigational factors used appear to include magnetic intensity as a component in their multi-modal navigational 'map'; olfactory input is also involved, even if it is not yet entirely clear in what way. The mechanisms of migratory birds for true navigation over long distances appear to be in principle similar to those discussed for by homing pigeons.

摘要

对在秋季迁徙期间偏离正常迁徙路线的候鸟进行的实验揭示了两种不同的导航策略

成年候鸟会弥补位移,朝着它们传统的越冬区域前进,而首次迁徙的幼鸟则继续沿其迁徙方向飞行。幼鸟由一个基因编码的迁徙程序引导至它们仍未知的目的地,该程序通过控制迁徙不安的程度以及相对于地磁场和天体旋转的罗盘航向,来指示迁徙飞行的持续时间和方向。已经越冬且熟悉目标区域的成年候鸟通过真正的导航接近目标,具体而言是朝着目标前进,并在位移后相应地改变航向。在它们的首次旅程中,幼鸟会体验沿途和越冬地潜在导航因素的分布情况,这使它们能够在接下来的迁徙中进行真正的导航。所使用的导航因素似乎包括磁强度作为其多模式导航“地图”的一个组成部分;嗅觉输入也有涉及,尽管其具体方式尚不完全清楚。候鸟进行长距离真正导航的机制在原则上似乎与信鸽所讨论的机制相似。

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