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Exaggerated orientation scatter of nocturnal passerine migrants close to breeding grounds: comparisons between seasons and latitudes

机译:夜行性雀形目迁徙者靠近繁殖地的夸大定向散布:季节和纬度之间的比较

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Using tracking radars, we investigated the variability of flight directions of long-distance nocturnal passerine migrants across seasons (spring versus autumn migration) and sites at the southern (56° N) and northern (68° N) ends of the Scandinavian Peninsula (Lund versus Abisko). Whilst most migrants at Lund are on passage to and from breeding sites in Fennoscandia, the majority of the migrants at Abisko are close to their breeding sites, and migration at Abisko thus to a large degree reflects initial departure from breeding sites (autumn) or final approach to breeding destinations (spring). The radar data were used to test predictions about differences in orientation and wind drift effects between adult and juvenile birds (a large proportion of autumn migrants consists of juvenile birds on their first journey), between situations far away from or near the goals and between different phases of migration (initial departure, en route passage, final approach to goal). The concentrations (both total and within-night concentrations) of flight directions differed significantly between seasons as well as sites, with the highest concentration at Lund in spring (mean vector length of track directions, r = 0.79) and lowest at Abisko during spring (r = 0.35). Partial wind drift and partial compensation were recorded at Lund, with a similar effect size in spring and autumn, whilst possible wind drift effects at Abisko were obscured by the large directional scatter at this site. The results from Lund support the prediction that the high proportion of juveniles in autumn contributes to increase the directional scatter during this season, whilst there was no support for predictions of differential wind drift effects between seasons and situations with different goal distances. The most striking and surprising result was the exceedingly large scatter of flight directions at Abisko, particularly in spring. We suggest that such an exaggerated scatter may be associated with final approach orientation, where migrants reach their specific goals from all various directions by final navigation within a more wide-ranging goal region. The larger scatter of autumn flight directions at Abisko compared to Lund may be due to exploratory flights in variable directions being more common at initial departure from breeding sites than later during migratory passage. These surprising results highlight the importance of studying and analysing orientation during final approach to (and initial departure from) migratory goals for understanding the orientation systems of migratory birds.
机译:使用跟踪雷达,我们调查了长途夜行性雀形目候鸟迁徙在各个季节(春季与秋季迁徙)之间以及斯堪的纳维亚半岛南部(北纬56°)和北端(北纬68°)站点的飞行方向变化。与Abisko)。尽管隆德的大多数移民正在往返芬诺斯坎迪亚的繁殖地,但阿比斯库的大多数移民都靠近他们的繁殖地,因此在阿比斯库的迁徙在很大程度上反映了最初离开繁殖地(秋季)或最终离开繁殖目的地的方法(春季)。雷达数据用于测试关于成年和幼鸟(很大一部分秋季迁徙者由幼鸟组成的第一次飞行),在远离目标或接近目标的情况之间以及不同目标之间的方向和风漂效应差异的预测迁移阶段(初始出发,途中通过,最终到达目标)。季节和地点之间的飞行方向浓度(总浓度和夜间浓度)存在显着差异,春季的隆德浓度最高(航迹方向的平均矢量长度,r = 0.79),春季的阿比斯库浓度最低( r = 0.35)。在隆德记录到部分风漂移和部分补偿,春季和秋季的影响大小相似,而阿比斯库可能的风漂移影响被该地点的大方向散射所掩盖。隆德的结果支持这样的预测:秋季高比例的少年有助于增加本季节的定向散射,而没有支持预测不同季节和不同目标距离情况之间风向飘移效应的差异。最惊人和令人惊讶的结果是在阿比斯库,特别是在春季,飞行方向的分散程度极大。我们建议,这种夸张的分散可能与最终进场定向有关,在这种情况下,移民可以通过在更广泛的目标区域内进行最终导航,从所有不同方向实现其特定目标。与隆德相比,阿比斯库的秋季飞行方向散布的数量更大,可能是由于从育种地点最初出发比在迁徙途中后来发生的可变方向的探索性飞行更为普遍。这些令人惊讶的结果突显了在最终实现(和最初偏离)迁移目标的过程中研究和分析定向的重要性,以了解候鸟的定向系统。

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