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Optimizing passive acoustic sampling of bats in forests

机译:优化森林中蝙蝠的被动声学采样

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AbstractPassive acoustic methods are increasingly used in biodiversity research and monitoring programs because they are cost-effective and permit the collection of large datasets. However, the accuracy of the results depends on the bioacoustic characteristics of the focal taxa and their habitat use. In particular, this applies to bats which exhibit distinct activity patterns in three-dimensionally structured habitats such as forests. We assessed the performance of 21 acoustic sampling schemes with three temporal sampling patterns and seven sampling designs. Acoustic sampling was performed in 32 forest plots, each containing three microhabitats: forest ground, canopy, and forest gap. We compared bat activity, species richness, and sampling effort using species accumulation curves fitted with the clench equation. In addition, we estimated the sampling costs to undertake the best sampling schemes. We recorded a total of 145,433 echolocation call sequences of 16 bat species. Our results indicated that to generate the best outcome, it was necessary to sample all three microhabitats of a given forest location simultaneously throughout the entire night. Sampling only the forest gaps and the forest ground simultaneously was the second best choice and proved to be a viable alternative when the number of available detectors is limited. When assessing bat species richness at the 1-km2 scale, the implementation of these sampling schemes at three to four forest locations yielded highest labor cost-benefit ratios but increasing equipment costs. Our study illustrates that multiple passive acoustic sampling schemes require testing based on the target taxa and habitat complexity and should be performed with reference to cost-benefit ratios. Choosing a standardized and replicated sampling scheme is particularly important to optimize the level of precision in inventories, especially when rare or elusive species are expected.
机译:摘要无源声学方法因其具有成本效益并允许收集大型数据集而越来越多地用于生物多样性研究和监测程序中。但是,结果的准确性取决于焦点类群的生物声学特性及其栖息地的使用。特别是,这适用于在三维结构的栖息地(例如森林)中表现出不同活动模式的蝙蝠。我们用三种时间采样模式和七种采样设计评估了21种声学采样方案的性能。在32个林地中进行了声采样,每个林地包含三个微生境:林地,林冠和林隙。我们使用符合clench方程的物种积累曲线比较了蝙蝠的活动,物种丰富度和采样工作量。此外,我们估算了采用最佳采样方案的采样成本。我们记录了16种蝙蝠的145,433个回声定位调用序列。我们的结果表明,要产生最佳结果,有必要在整个晚上同时采样给定森林位置的所有三个微生境。仅对林间空地和林场同时进行采样是第二好的选择,并且在可用探测器数量有限的情况下,被证明是可行的选择。在以1 km 2 规模评估蝙蝠物种的丰富度时,在三到四个森林位置实施这些采样方案产生了最高的人工成本-收益比,但设备成本却增加了。我们的研究表明,多种无源声学采样方案需要根据目标分类单元和栖息地复杂性进行测试,并且应参考成本效益比进行测试。选择标准化和重复的采样方案对于优化清单的精确度尤其重要,尤其是在预计稀有或难以捉摸的物种时。

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