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Solar-powered radio tags reveal patterns of post-fledging site visitation in adult and juvenile Tree Swallows Tachycineta bicolor

机译:太阳能无线电标签揭示了成年和幼年树燕子双色Tachycineta的出雏后访视的方式

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摘要

The availability of small, lightweight tracking devices enhances our ability to study birds during mobile phases of their lives. Tree Swallows Tachycineta bicolor, a model species of wild songbird, are well-studied during their breeding season; but our understanding of their biology at other times of the year, when they are not tied to the fixed location of a nest, is more limited. We developed a lightweight radio tag with no battery (solar nanotag) to study the movements of small animals, and we deployed it to explore the behavior of Tree Swallows after the end of their summer breeding season. We tagged 32 breeding adult swallows and 36 juveniles and monitored their presence and absence at the breeding site during the post-fledging period. Although our observations are based on very small sample sizes, the tags revealed previously unknown patterns in Tree Swallow behavior during the post-breeding season. Some Tree Swallow fledglings continued to visit the site repeatedly in the months following the nesting season, with the latest detection occurring on September 30th; by contrast, all adults had permanently departed by the end of July. These results inform future hypotheses about post-breeding movements in Tree Swallows. But, more generally, the detection of tagged swallows on their distant wintering grounds, seven months after tagging, indicates the potential of studying small passerine movements throughout their entire lifetimes, and suggests a rich array of applications for these “Life Tags” to study the movements of small animals world-wide.
机译:小型轻巧的跟踪设备的可用性增强了我们在鸟类生命活动阶段研究鸟类的能力。燕子Tachycineta bicolor是野生鸣鸟的典范物种,在繁殖季节受到了充分研究;但是,当我们不将它们与巢的固定位置绑定在一起时,我们对它们在一年中其他时间的生物学的了解将更加有限。我们开发了一种不带电池的轻型无线电标签(太阳能纳米标签)来研究小型动物的活动,并在其夏季繁殖季节结束后部署了该标签以研究燕子的行为。我们标记了32只成年燕子和36只少年燕子,并在出雏后监测它们在繁殖场的存在与否。尽管我们的观察基于很小的样本量,但标签揭示了繁殖后季节树燕子行为的未知模式。在筑巢季节后的几个月中,一些树燕子幼鸟继续重复访问该地点,最新发现发生在9月30日。相比之下,所有成年人都已在7月底永久离开。这些结果为有关树燕子繁殖后运动的未来假设提供了依据。但是,更普遍的是,在标记后七个月,在遥远的越冬地点检测到带标记的燕子,表明有可能在整个生命周期中研究小型雀形花的运动,并建议这些“生命标记”在研究生命的过程中有广泛的应用。全世界小动物的运动。

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