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自主声音记录在鸟类采样方面优于人工观察:系统图谱和用户指南。

Autonomous sound recording outperforms human observation for sampling birds: a systematic map and user guide.

机构信息

Agroecology, Department of Crop Sciences, University of Goettingen, Grisebachstrasse 6, 37077, Göttingen, Germany.

Lendület Landscape and Conservation Ecology, Institute of Ecology and Botany, MTA Centre for Ecological Research, Alkotmány u. 2-4, 2163, Vácrátót, Hungary.

出版信息

Ecol Appl. 2019 Sep;29(6):e01954. doi: 10.1002/eap.1954. Epub 2019 Jul 22.

Abstract

Autonomous sound recording techniques have gained considerable traction in the last decade, but the question remains whether they can replace human observation surveys to sample sonant animals. For birds in particular, survey methods have been tested extensively using point counts and sound recording surveys. Here, we review the latest evidence for this taxon within the frame of a systematic map. We compare sampling effectiveness of these two survey methods, the output variables they produce, and their practicality. When assessed against the standard of point counts, autonomous sound recording proves to be a powerful tool that samples at least as many species. This technology can monitor birds in an exhaustive, standardized, and verifiable way. Moreover, sound recorders give access to entire soundscapes from which new data types can be derived (vocal activity, acoustic indices). Variables such as abundance, density, occupancy, or species richness can be obtained to yield data sets that are comparable to and compatible with point counts. Finally, autonomous sound recorders allow investigations at high temporal and spatial resolution and coverage, which are more cost effective and cannot be achieved by human observations alone, even though small-scale studies might be more cost effective when carried out with point counts. Sound recorders can be deployed in many places, they are more scalable and reliable, making them the better choice for bird surveys in an increasingly data-driven time. We provide an overview of currently available recorders and discuss their specifications to guide future study designs.

摘要

自主录音技术在过去十年中得到了广泛的关注,但仍存在疑问,即它们是否可以替代人类观察调查来采样发声动物。特别是对于鸟类,已经使用点计数和录音调查对调查方法进行了广泛的测试。在这里,我们在系统图谱的框架内回顾了该分类单元的最新证据。我们比较了这两种调查方法的抽样效果、它们产生的输出变量及其实用性。与点计数标准相比,自主录音证明是一种强大的工具,至少可以采集到相同数量的物种。这项技术可以以详尽、标准化和可验证的方式监测鸟类。此外,录音器可以访问整个声景,从中可以衍生出新的数据类型(发声活动、声学指标)。可以获得诸如丰度、密度、占有率或物种丰富度等变量,从而生成与点计数相当且兼容的数据组。最后,自主录音器允许进行高时间和空间分辨率以及全覆盖的调查,这比仅靠人工观察更具成本效益,尽管在进行小规模研究时,点计数可能更具成本效益。录音器可以部署在许多地方,它们更具可扩展性和可靠性,因此在数据驱动的时代,它们是鸟类调查的更好选择。我们提供了当前可用的记录器的概述,并讨论了它们的规格,以指导未来的研究设计。

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