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利用卡西达加溪流域(美国)长期生物声学蝙蝠调查数据集的逻辑回归分析进行栖息地适宜性制图。

Habitat suitability mapping using logistic regression analysis of long-term bioacoustic bat survey dataset in the Cassadaga Creek watershed (USA).

机构信息

Department of Geography, University at Buffalo, 116 Wilkeson Quadrangle, Buffalo, NY 14261, USA; Landscape-based Environmental System Analysis & Modeling Laboratory (LESAM), University at Buffalo, 142 Wilkeson Quadrangle, Buffalo, NY 14261, USA.

Department of Geography, University at Buffalo, 116 Wilkeson Quadrangle, Buffalo, NY 14261, USA.

出版信息

Sci Total Environ. 2023 Oct 15;895:165077. doi: 10.1016/j.scitotenv.2023.165077. Epub 2023 Jun 24.

Abstract

Bat species show global ecological importance, yet their numbers are declining worldwide. Understanding bat-habitat interactions is crucial in terms of developing effective conservation plans. In an effort to model bat habitat suitability in the Cassadaga Creek watershed, long-term bioacoustic bat data (spanning 2009-2020) was compiled, georeferenced and statistically analyzed using logistic regression techniques. In total, 1600 bat occurrence records from five species of bat (559 Eptesicus fuscus, 560 Lasionycteris noctivagans, 143 Lasiurus borealis, 260 Lasiurus cinereus, and 78 Myotis lucifugus) were paired with pseudo-absence points to study the relationship between bat calling behavior and land cover. All bats but Myotis lucifugus had a statistically significant relationship with forested land cover, and all bats had negative interactions with agricultural habitats. Geospatial data was coupled with the statistical output to create maps of habitat suitability and echolocation calling density. This work provides a model that can be employed worldwide to evaluate bat habitat needs or patterns in echolocation behavior. Future research will incorporate a more recently collected dataset that is of greater geographic diversity with a larger number of environmental variables in the species distribution model.

摘要

蝙蝠物种具有全球生态重要性,但它们的数量在全球范围内正在下降。了解蝙蝠与栖息地的相互作用对于制定有效的保护计划至关重要。为了在卡萨达加溪流域模拟蝙蝠栖息地适宜性,我们收集了长期的生物声学蝙蝠数据(涵盖 2009 年至 2020 年),并使用逻辑回归技术进行了地理参考和统计分析。总共对来自五种蝙蝠(559 只 Eptesicus fuscus、560 只 Lasionycteris noctivagans、143 只 Lasiurus borealis、260 只 Lasiurus cinereus 和 78 只 Myotis lucifugus)的 1600 个蝙蝠出现记录进行了配对,并与伪不存在点一起研究了蝙蝠叫声行为与土地覆盖之间的关系。除了 Myotis lucifugus 之外,所有蝙蝠与森林土地覆盖都具有统计学上的显著关系,所有蝙蝠与农业栖息地都有负相互作用。地理空间数据与统计输出相结合,创建了栖息地适宜性和回声定位叫声密度图。这项工作提供了一个可以在全球范围内使用的模型,用于评估蝙蝠的栖息地需求或回声定位行为模式。未来的研究将结合一个更近期收集的数据集,该数据集在物种分布模型中具有更大的地理多样性和更多的环境变量。

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