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高纬度地区鸟类的定向:西伯利亚与北美洲之间横跨北冰洋的飞行路线。

Bird orientation at high latitudes: flight routes between Siberia and North America across the Arctic Ocean.

作者信息

Alerstam T, Gudmundsson GA

机构信息

Department of Animal Ecology, Lund University, Sweden.

出版信息

Proc Biol Sci. 1999 Dec 22;266(1437):2499-505. doi: 10.1098/rspb.1999.0952.

DOI:10.1098/rspb.1999.0952
PMID:10693821
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1690484/
Abstract

Bird migration and orientation at high latitudes are of special interest because of the difficulties associated with different compass systems in polar areas and because of the considerable differences between flight routes conforming to loxodromes (rhumblines) or orthodromes (great circle routes). Regular and widespread east-north-east migration of birds from the northern tundra of Siberia towards North America across the Arctic Ocean (without landmark influences) were recorded by ship-based tracking radar studies in July and August. Field observations indicated that waders, including species such as Phalaropusfulicarius and Calidris melanotos, dominated, but also terns and skuas may have been involved. Analysis of flight directions in relation to the wind showed that these movements are not caused by wind drift. Assuming possible orientation principles based on celestial or geomagnetic cues, different flight trajectories across the Arctic Ocean were calculated: geographical loxodromes, sun compass routes, magnetic loxodromes and magnetoclinic routes. The probabilities of these four alternatives are evaluated on the basis of both the availability of required orientation cues and the predicted flight paths. This evaluation supports orientation along sun compass routes. Because of the longitudinal time displacement sun compass routes show gradually changing compass courses in close agreement with orthodromes. It is suggested that an important migration link between Siberia and North American stopover sites 1000-2500km apart across the Arctic Ocean has evolved based on sun compass orientation along orthodrome-like routes.

摘要

鸟类在高纬度地区的迁徙和定向备受关注,这是因为极地地区不同罗盘系统存在困难,以及符合等角航线(恒向线)或大圆航线的飞行路线存在显著差异。通过基于船舶的跟踪雷达研究,在7月和8月记录到了鸟类有规律且广泛地从西伯利亚北部苔原向北美穿越北冰洋的东北偏东方向迁徙(不受地标影响)。实地观察表明,涉禽占主导,包括如红颈瓣蹼鹬和黑胸滨鹬等物种,但燕鸥和贼鸥可能也参与其中。对与风向相关的飞行方向分析表明,这些移动并非由风的漂移造成。基于天体或地磁线索假设可能的定向原理,计算出了穿越北冰洋的不同飞行轨迹:地理等角航线、太阳罗盘航线、磁等角航线和磁倾航线。根据所需定向线索的可用性和预测的飞行路径,对这四种可能性进行了评估。该评估支持沿太阳罗盘航线的定向。由于经度上的时间位移,太阳罗盘航线显示出逐渐变化的罗盘航向,与大圆航线密切一致。有人提出,基于沿类似大圆航线的太阳罗盘定向,已经形成了一条跨越北冰洋、相隔1000 - 2500公里的西伯利亚与北美中途停留地之间重要的迁徙联系。

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本文引用的文献

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Circadian and circannual programmes in avian migration.鸟类迁徙中的昼夜节律和年节律程序。
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