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An agent-based model of cattle grazing toxic Geyers larkspur

机译:牛放牧有毒盖尔氏百灵的一种基于代理的模型

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摘要

By killing cattle and otherwise complicating management, the many species of larkspur (Delphinium spp.) present a serious, intractable, and complex challenge to livestock grazing management in the western United States. Among the many obstacles to improving our understanding of cattle-larkspur dynamics has been the difficulty of testing different grazing management strategies in the field, as the risk of dead animals is too great. Agent-based models (ABMs) provide an effective method of testing alternate management strategies without risk to livestock. ABMs are especially useful for modeling complex systems such as livestock grazing management, and allow for realistic bottom-up encoding of cattle behavior. Here, we introduce a spatially-explicit, behavior-based ABM of cattle grazing in a pasture with a dangerous amount of Geyer’s larkspur (D. geyeri). This model tests the role of herd cohesion and stocking density in larkspur intake, finds that both are key drivers of larkspur-induced toxicosis, and indicates that alteration of these factors within realistic bounds can mitigate risk. Crucially, the model points to herd cohesion, which has received little attention in the discipline, as playing an important role in lethal acute toxicosis. As the first ABM to model grazing behavior at realistic scales, this study also demonstrates the tremendous potential of ABMs to illuminate grazing management dynamics, including fundamental aspects of livestock behavior amidst ecological heterogeneity.
机译:通过杀死牛和使管理复杂化,许多种类的拉克斯布尔(Delphinium spp。)对美国西部的牲畜放牧管理提出了严重,棘手且复杂的挑战。由于对死牲畜的风险太大,因此难以在野外测试不同的放牧管理策略,这是提高我们对牛-飞虱动态的了解的众多障碍之一。基于代理的模型(ABM)提供了一种有效的方法来测试替代管理策略,而不会给牲畜带来风险。 ABM对于建模复杂的系统(例如牲畜放牧管理)特别有用,并且可以对牛的行为进行自下而上的真实编码。在这里,我们介绍一种在空间上基于行为的,基于行为的ABM,在牧场上放牧有危险的Geyer百灵鸟(D. geyeri)的牛。该模型测试了畜群凝聚力和放养密度在百灵鸟摄入中的作用,发现二者都是百灵鸟引起的中毒的关键驱动力,并表明在现实范围内改变这些因素可以降低风险。至关重要的是,该模型指出了畜群凝聚力,因为它在致命的急性中毒中起着重要作用,因此在该学科中很少受到关注。作为第一个在现实尺度上模拟放牧行为的ABM,这项研究还证明了ABM在阐明放牧管理动态方面的巨大潜力,包括生态异质性中的牲畜行为的基本方面。

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