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Estimating mammalian species richness and occupancy in tropical forest canopies with arboreal camera traps

机译:利用树状照相机陷阱估算热带森林冠层中的哺乳动物物种丰富度和占有率

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Large and medium?¢????bodied rainforest canopy mammals are typically surveyed using line transects, but these are labour intensive and usually ignore nocturnal species. Camera traps have become the preferred tool for assessing terrestrial mammal communities, but have rarely been used for arboreal species. Here, we compare the efficiency of arboreal camera trapping with line transects for inventorying medium and large?¢????sized arboreal mammals, and assess the viability of using camera traps in trees to model habitat occupancy. We installed 42 camera traps, spaced 2????km apart, in the canopy of the Maijuna?¢????Kichwa Regional Conservation Area, Peru and walked 2014????km of diurnal line transects on 22 trails at the same site. We compared the efficiency of each method using species accumulation curves. We applied a multi?¢????species occupancy model, while examining the effect of camera height on detection probabilities, including the distance from a village and from a river as covariates to examine variability in habitat occupancy. In 3147 camera days, 18 species of arboreal medium and large?¢????sized mammals were detected by cameras, while 11 species were recorded on line transects. Ten of these species were detected by both methods. Diurnal species were detected more quickly and with less effort using arboreal camera trapping than using diurnal line transects at the same site, although some species were more easily detected during line transects. Habitat occupancy was positively correlated with distance from the village for two species, and negatively correlated with distance from the river for one. Detection probabilities increased modestly with camera height. Practical limitations of arboreal camera trapping include the requirement for specialized climbing techniques, as well as increased potential for false triggers, requiring extended processing time. Arboreal camera trapping is an efficient method for inventorying arboreal mammals and a viable option for studying their distribution relative to environmental or anthropogenic variables when abundance or density estimates are not required.
机译:大型和中型的热带雨林树冠哺乳动物通常使用线样线进行调查,但这些都是劳动密集型的,通常会忽略夜间物种。相机陷阱已成为评估陆地哺乳动物群落的首选工具,但很少用于树栖物种。在这里,我们比较了用树木样线捕捉树木和树木的效率,以清点中型和大型树木栖类哺乳动物,并评估了在树木中使用照相机陷阱来模拟栖息地占用的可行性。我们在秘鲁Maijuna的天幕上安装了42个相隔2公里的相机陷阱,并在2014年的22公里步道上走了2014公里的日线样线。同一站点。我们使用物种积累曲线比较了每种方法的效率。我们应用了多种物种占用模型,同时研究了相机高度对检测概率的影响,包括从村庄到河流的距离作为协变量,以研究栖息地占用的变异性。在3147个摄像天中,通过摄像头检测到18种树栖中型和大型哺乳动物,而在线样面上记录了11种。两种方法都检测到其中的十种。与在同一位置使用昼夜线样面相比,使用树状相机诱捕方法更容易地检测昼夜物种,尽管在直线样面过程中更容易检测到某些物种。栖息地的占有率与两种物种到村庄的距离呈正相关,而与一种物种的到河流的距离呈负相关。检测概率随相机高度的增加而适度增加。树木相机诱捕的实际局限性包括需要专门的攀爬技术,以及增加误触发的可能性,这需要更长的处理时间。树木摄影机诱捕是清点树木哺乳动物的一种有效方法,并且是在不需要丰度或密度估算时研究其相对于环境或人为因素的分布的可行选择。

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