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Energetics as common currency for integrating high resolution activity patterns into dynamic energy budget-individual based models

机译:精力充沛是将高分辨率活动模式集成到动态能源预算的常见货币中的常见货币

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Dynamic energy budget individual-based models (DEB-IBMs) provide a well-tested framework for modelling the acquisition and use of energy throughout the life cycle of organisms. These models are often developed using species-specific data to link behaviour and physiology and predict how individuals and populations perform in changing environments. Novel bio-logging technology, applied to free-ranging animals, provide detailed information about individual behavioural variations and responses to the environment. However, so far, no DEB IBM has attempted to link and parameterise energy dynamics with the fine-scale activity data obtained by biologging to answer questions related to life history events in wild populations. The aim of this study is, therefore, to develop and test a DEB-IBM framework which integrates individuals behaviour obtained from high-resolution activity data. Our approach uses data collected with GPS and accelerometer tags attached to two muskox (Ovibos moschatus). The individuals had different fates: one survived the Arctic winter, while the other died. Applying hidden Markov models to accelerometer data, we quantified the variation in behavioural activity budgets (in stationary, feeding and transit) in relation to environmental conditions. We subsequently test how differences in time allocation affect fitness outcomes such as body mass, energy reserves and survival. The proportion of time spent feeding by each animal is used within the DEB-IBM framework to scale the functional response for food acquisition. Simulations using the seasonal feeding budget of the deceased individual lead to drastically reduced energy reserves and body weight during the Arctic winter, and to elevated probabilities of mortality by the end of winter. In contrast, simulations using the seasonal feeding pattern of the surviving muskox, result in much less pronounced losses in reserves and body weight, leading to negligible over-winter mortality. The framework we present here uses standardized modelling techniques, is applicable across species and can easily be extended to include other fitness measures or environmental stressors. Moreover, our framework provides the foundation needed for future studies to link individual movements, energetic processes, life history events and population dynamics in wildlife, which would open up possibilities to test how changing (future) environmental conditions influence animal decision-making and ultimately population level consequences.
机译:动态能源预算基于个人的模型(DEB-IBMS)提供了一个经过良好测试的框架,用于在整个生物的生命周期内建模采集和使用能量。这些模型通常是使用特定物种的数据开发的,以链接行为和生理学,并预测个人和群体在更改环境中的表现。新的生物测井技术适用于自由量的动物,提供有关个性行为变化和对环境的反应的详细信息。然而,到目前为止,没有任何DEB IBM试图通过通过Biologging获得的微尺度活动数据来将能源动态联系起来,以回答与野生人群中的生命历史事件有关的问题。因此,本研究的目的是开发和测试DEB-IBM框架,该框架集成了从高分辨率活动数据获得的个人行为。我们的方法使用与GPS和加速度计标签收集的数据连接到两个Muskox(Ovibos Moschatus)。个人有不同的命运:一个人在北极冬天幸存下来,而另一个死亡。将隐藏的马尔可夫模型应用于加速度计数据,我们在环境条件方面量化了行为活动预算的变化(在静止,喂养和过境)。我们随后测试时间分配的差异如何影响体重,能量储备和生存等健身结果。在Deb-IBM框架内使用每种动物喂养的时间比例,以扩展食品采购的功能响应。使用已故个人的季节性喂养预算的模拟导致北极冬季的能量储备和体重增加,并在冬季结束时提高死亡率。相比之下,使用幸存的麝香群的季节性喂养模式模拟,导致储量和体重的损失较少,导致过度冬季死亡率可忽略不计。我们呈现的框架使用标准化的建模技术,适用于物种,可以轻松扩展到包括其他健身措施或环境压力源。此外,我们的框架为未来的研究提供了基础,以将个人运动,精力量流程,生命历史事件和人口动态联系起来,这将开辟测试改变(未来)环境条件如何影响动物决策和最终人口的可能性水平后果。

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