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Navigating uncertain waters: a critical review of inferring foraging behaviour from location and dive data in pinnipeds

机译:在不确定的水域中航行:严格审查从钳位位置和潜水数据推断觅食行为

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摘要

In the last thirty years, the emergence and progression of biologging technology has led to great advances in marine predator ecology. Large databases of location and dive observations from biologging devices have been compiled for an increasing number of diving predator species (such as pinnipeds, sea turtles, seabirds and cetaceans), enabling complex questions about animal activity budgets and habitat use to be addressed. Central to answering these questions is our ability to correctly identify and quantify the frequency of essential behaviours, such as foraging. Despite technological advances that have increased the quality and resolution of location and dive data, accurately interpreting behaviour from such data remains a challenge, and analytical methods are only beginning to unlock the full potential of existing datasets. This review evaluates both traditional and emerging methods and presents a starting platform of options for future studies of marine predator foraging ecology, particularly from location and two-dimensional (time-depth) dive data. We outline the different devices and data types available, discuss the limitations and advantages of commonly-used analytical techniques, and highlight key areas for future research. We focus our review on pinnipeds - one of the most studied taxa of marine predators - but offer insights that will be applicable to other air-breathing marine predator tracking studies. We highlight that traditionally-used methods for inferring foraging from location and dive data, such as first-passage time and dive shape analysis, have important caveats and limitations depending on the nature of the data and the research question. We suggest that more holistic statistical techniques, such as state-space models, which can synthesise multiple track, dive and environmental metrics whilst simultaneously accounting for measurement error, offer more robust alternatives. Finally, we identify a need for more research to elucidate the role of physical oceanography, device effects, study animal selection, and developmental stages in predator behaviour and data interpretation.Electronic supplementary materialThe online version of this article (doi:10.1186/s40462-016-0090-9) contains supplementary material, which is available to authorized users.
机译:在过去的三十年中,生物测井技术的出现和发展导致了海洋捕食者生态学的巨大进步。已针对越来越多的潜水捕食物种(如pin鱼,海龟,海鸟和鲸类)汇编了大型生物记录设备的位置和潜水观测资料的大型数据库,从而可以解决有关动物活动预算和栖息地使用的复杂问题。回答这些问题的关键是我们能够正确识别和量化诸如觅食之类的基本行为的频率。尽管技术进步已经提高了位置和潜水数据的质量和分辨率,但是从此类数据中准确解释行为仍然是一个挑战,而分析方法才刚刚开始释放现有数据集的全部潜力。这篇综述评估了传统方法和新兴方法,并为海洋捕食者觅食生态学的未来研究提供了一个选择的起始平台,尤其是从位置和二维(时间深度)潜水数据中。我们概述了可用的不同设备和数据类型,讨论了常用分析技术的局限性和优势,并突出了未来研究的关键领域。我们将重点放在针脚ed上-捕食性最深入研究的海洋生物分类群之一-但提供的见解将适用于其他空气呼吸式海洋捕食者追踪研究。我们强调指出,根据位置和潜水数据推断觅食的传统方法(例如首次通过时间和潜水形状分析)根据数据的性质和研究问题具有重要的警告和局限性。我们建议,更全面的统计技术(例如状态空间模型)可以综合多个航迹,潜水和环境指标,同时考虑测量误差,它们提供了更可靠的选择。最后,我们发现有必要进行更多的研究来阐明物理海洋学,设备效应,研究动物选择以及发育阶段在捕食者行为和数据解释中的作用。电子补充材料本文的在线版本(doi:10.1186 / s40462-016 -0090-9)包含补充材料,授权用户可以使用。

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