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这是一个陷阱:优化稀有小型哺乳动物的检测。

It's a trap: Optimizing detection of rare small mammals.

机构信息

Department of Zoology and Physiology and Program in Ecology, University of Wyoming, Laramie, Wyoming, United States of America.

U. S. Fish and Wildlife Service, Cheyenne, Wyoming, United States of America.

出版信息

PLoS One. 2019 Mar 5;14(3):e0213201. doi: 10.1371/journal.pone.0213201. eCollection 2019.

Abstract

Improving detection probabilities for rare species is critical when assessing presence or habitat associations. Our goal was to create a new small mammal trapping protocol that improved detection of rare species, such as the olive-backed pocket mouse (Perognathus fasciatus). We used three trap and bait types and trapped an area 4.4 times larger than the standard grid. We also assessed the effect of captures of non-target species on detection probability of pocket mice. Regardless of species, trap success was higher for Havaharts. We found that bait and trap type selection varied significantly by species, with pocket mice showing strongest selection for Havahart traps baited with bird seed. Increasing grid size, while maintaining a similar trapping effort, resulted in higher detection probability, although our analyses showed that effective grids can be about three-quarters of the size we use to achieve similar results. We were also able to demonstrate that by deploying a combination of different traps and baits it is possible to overcome the potential effect of non-target species (e.g., deer mice, Peromyscus maniculatus) on the detection probability of pocket mice. Our results show that simple changes to standard small-mammal trapping methods can dramatically increase the detectability of rare and elusive small mammals. Increasing detection probability of rare components of a community can improve the results and understanding of future studies.

摘要

提高稀有物种的检测概率对于评估其存在或栖息地关联至关重要。我们的目标是创建一种新的小型哺乳动物诱捕方案,以提高稀有物种(如橄榄背囊鼠(Perognathus fasciatus))的检测率。我们使用了三种诱捕器和诱饵类型,诱捕面积比标准网格大 4.4 倍。我们还评估了非目标物种的捕获对囊鼠检测概率的影响。无论物种如何,陷阱成功率都更高 Havaharts。我们发现,诱饵和诱捕器类型的选择因物种而异,囊鼠对鸟种子诱饵的 Havahart 诱捕器表现出最强的选择性。在保持类似的诱捕力度的情况下,增加网格大小会导致更高的检测概率,尽管我们的分析表明,有效的网格大小可以是我们使用的大小的四分之三左右,以获得类似的结果。我们还能够证明,通过部署不同的诱捕器和诱饵组合,可以克服非目标物种(例如鹿鼠,Peromyscus maniculatus)对囊鼠检测概率的潜在影响。我们的结果表明,对标准小型哺乳动物诱捕方法进行简单的更改可以显著提高稀有且难以捉摸的小型哺乳动物的可检测性。提高社区中稀有成分的检测概率可以提高未来研究的结果和理解。

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