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An easy, flexible solution to attach devices to hedgehogs ( Erinaceus europaeus ) enables long‐term high‐resolution studies

机译:将设备附加到刺猬(Erinaceus Ouropaeus)的简单,灵活的解决方案使得能够长期高分辨率研究

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Bio‐logging is an essential tool for the investigation of behavior, ecology, and physiology of wildlife. This burgeoning field enables the improvement of population monitoring and conservation efforts, particularly for small, elusive animals where data collection is difficult. Device attachment usually requires species‐specific solutions to ensure that data loggers exert minimal influence on the animal’s behavior and physiology, and ensure high reliability of data capture. External features or peculiar body shapes often make securing devices difficult for long‐term monitoring, as in the case with small spiny mammals. Here, we present a method that enables high‐resolution, long‐term investigations of European hedgehogs ( Erinaceus europaeus ) via GPS and acceleration loggers. We collected data from 17 wild hedgehogs with devices attached between 9 and 42?days. Our results showed that hedgehogs behaved naturally; as individuals curled, moved through dense vegetation, slipped under fences and built regular day nests without any indication of impediment. Our novel method makes it possible to not only attach high‐precision devices for substantially longer than previous efforts, but enables detachment and reattachment of devices to the same individual. This makes it possible to quickly respond to unforeseen events and exchange devices, and overcomes the issue of short battery life common to many lightweight loggers.
机译:生物记录是调查野生动物的行为,生态和生理学的重要工具。该蓬勃发展的领域能够改善人口监测和保护努力,特别是对于数据收集困难的小型难以捉摸的动物。设备附件通常需要特定于物种的解决方案,以确保数据记录器对动物的行为和生理产生最小的影响,并确保数据捕获的高可靠性。外部特征或特殊的身体形状经常使确保器件难以长期监测,如小刺的哺乳动物的情况一样。在这里,我们提出了一种通过GPS和加速记录器实现高分辨率,高分辨率,长期调查欧洲刺猬(Erinaceus Ouropaeus)。我们将数据从17个野生刺猬收集到9点到42天之间的设备。我们的研究结果表明,刺猬自然表现得自然;随着个体卷曲,通过密集的植被移动,在围栏下滑动并建成常规日巢,没有任何障碍的迹象。我们的新方法使得不仅可以安装高精度的设备,而不是比以前的努力长得更长,而是使装置的分离和重新连接到同一个体。这使得可以快速响应不可预见的事件和交换设备,并克服许多轻量级记录器的短电池寿命问题。

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