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首页> 外文期刊>Movement Ecology >Detecting changes in the annual movements of terrestrial migratory species: using the first-passage time to document the spring migration of caribou
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Detecting changes in the annual movements of terrestrial migratory species: using the first-passage time to document the spring migration of caribou

机译:探测陆上迁徙物种年度运动的变化:利用首次通过时间记录北美驯鹿的春季迁徙

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BackgroundMigratory species face numerous threats related to human encroachment and climate change. Several migratory populations are declining and individuals are losing their migratory behaviour. To understand how habitat loss or changes in the phenology of natural processes affect migrations, it is crucial to clearly identify the timing and the patterns of migration. We propose an objective method, based on the detection of changes in movement patterns, to identify departure and arrival dates of the migration. We tested the efficiency of our approach using simulated paths before applying it to spring migration of migratory caribou from the Rivière-George and Rivière-aux-Feuilles herds in northern Québec and Labrador. We applied the First-Passage Time analysis (FPT) to locations of 402 females collected between 1986 and 2012 to characterize their movements throughout the year. We then applied a signal segmentation process in order to segment the path of FPT values into homogeneous bouts to discriminate migration from seasonal range use. This segmentation process was used to detect the winter break and the calving ground use because spring migration is defined by the departure from the winter range and the arrival on the calving ground. ResultsSegmentation of the simulated paths was successful in 96% of the cases, and had a high precision (96.4% of the locations assigned to the appropriate segment). Among the 813 winter breaks and 669 calving ground use expected to be detected on the FPT profiles, and assuming that individuals always reduced movements for each of the two periods, we detected 100% of the expected winter breaks and 89% of the expected calving ground use, and identified 648 complete spring migrations. Failures to segment winter breaks or calving ground use were related to individuals only slowing down or performing less pronounced pauses resulting in low mean FPT. ConclusionWe show that our approach, which relies only on the analysis of movement patterns, provides a suitable and easy-to-use tool to study species exhibiting variations in their migration patterns and seasonal range use.
机译:背景迁徙物种面临与人类入侵和气候变化有关的众多威胁。一些移民人口正在减少,个人正在失去其移民行为。要了解栖息地的丧失或自然过程的物候变化如何影响迁徙,至关重要的是清楚地确定迁徙的时间和方式。我们基于检测运动模式的变化,提出一种客观的方法来识别迁移的出发和到达日期。在将其应用于魁北克北部和拉布拉多的Rivière-George和Rivière-aux-Feuilles牛群春季迁徙驯鹿的迁徙之前,我们使用模拟路径测试了该方法的效率。我们对1986年至2012年间收集的402位女性进行了首次通过时间分析(FPT),以表征其全年的运动情况。然后,我们应用了信号分割过程,以将FPT值的路径分割为同质的回合,从而将迁移与季节性使用范围区别开来。该分段过程用于检测冬季休假和产犊场的使用,因为春季迁移是通过偏离冬季范围和到达产犊场来定义的。结果在96%的情况下,模拟路径的分割成功,并且具有很高的精度(将96.4%的位置分配给适当的段)。在FPT剖析中预计会发现的813个冬季休息和669个产犊场的使用中,并且假设个人在两个时期的每个时期总是减少运动,我们检测到100%的预期冬季休息和89%的产犊场使用,并确定648个完整的春季迁移。未能划分冬季休息时间或产犊场的原因与个人只放慢脚步或停顿不明​​显导致平均FPT低有关。结论我们表明,我们的方法仅依赖于运动模式的分析,提供了一种合适且易于使用的工具来研究在其迁徙模式和季节范围使用方面表现出差异的物种。

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