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Putting the behavior into animal movement modeling: Improved activity budgets from use of ancillary tag information

机译:将行为纳入动物运动建模:通过使用辅助标签信息改进活动预算

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摘要

Animal movement research relies on biotelemetry, and telemetry‐based locations are increasingly augmented with ancillary information. This presents an underutilized opportunity to enhance movement process models. Given tags designed to record specific behaviors, efforts are increasing to update movement models beyond reliance solely upon horizontal movement information to improve inference of space use and activity budgets. We present two state‐space models adapted to incorporate ancillary data to inform three discrete movement states: directed, resident, and an activity state. These were developed for two case studies: (1) a “haulout” model for Weddell seals, and (2) an “activity” model for Antarctic fur seals which intersperse periods of diving activity and inactivity. The methodology is easily implementable with any ancillary data that can be expressed as a proportion (or binary) indicator. A comparison of the models augmented with ancillary information and unaugmented models confirmed that many behavioral states appeared mischaracterized in the latter. Important changes in subsequent activity budgets occurred. Haulout accounted for 0.17 of the overall Weddell seal time budget, with the estimated proportion of time spent in a resident state reduced from a posterior median of 0.69 (0.65–0.73; 95% HPDI) to 0.54 (0.50–0.58 HPDI). The drop was more dramatic in the Antarctic fur seal case, from 0.57 (0.52–0.63 HPDI) to 0.22 (0.20–0.25 HPDI), with 0.35 (0.31–0.39 HPDI) of time spent in the inactive (nondiving) state. These findings reinforce previously raised contentions about the drawbacks of behavioral states inferred solely from horizontal movements. Our findings have implications for assessing habitat requirements; estimating energetics and consumption; and management efforts such as mitigating fisheries interactions. Combining multiple sources of information within integrated frameworks should improve inference of relationships between movement decisions and fitness, the interplay between resource and habitat dependencies, and their changes at the population and landscape level.
机译:动物运动研究依赖于生物遥测技术,基于遥测的位置越来越多地带有辅助信息。这为增强运动过程模型提供了未充分利用的机会。给定用于记录特定行为的标签,人们不仅在依靠水平运动信息的情况下,还努力更新运动模型,以改善对空间使用和活动预算的推断。我们提出了两个状态空间模型,这些模型适用于合并辅助数据,以告知三个离散的运动状态:定向状态,驻留状态和活动状态。这些是为两个案例研究开发的:(1)Weddell海豹的“拖运”模型,以及(2)南极海豹的“活动”模型,该模型散布了潜水活动和非活动时期。该方法可以轻松地用任何可以表示为比例(或二进制)指标的辅助数据来实施。比较带有辅助信息的模型和未增强的模型,证实了在后者中许多行为状态似乎是错误的。后续活动预算发生了重要变化。拖运占Weddell海豹总时间预算的0.17,在居民区花费的时间估计比例从后中位数0.69(0.65-0.73; 95%HPDI)减少到0.54(0.50-0.58 HPDI)。在南极海狗案例中,下降幅度更为显着,从0.57(0.52-0.63 HPDI)降至0.22(0.20-0.25 HPDI),而在非活动(非潜水)状态下花费的时间为0.35(0.31-0.39 HPDI)。这些发现加强了先前关于仅由水平运动推断出的行为状态的弊端的争论。我们的发现对评估栖息地需求有影响;估计能量和消耗;以及减少渔业互动等管理工作。在综合框架内结合多种信息来源,应能更好地推断运动决策与适应性之间的关系,资源与栖息地依存关系之间的相互作用以及它们在人口和景观水平上的变化。

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