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Evaluating effects of low quality habitats on regional population growth in Peromyscus leucopus: Insights from field-parameterized spatial matrix models

机译:评价低质量栖息地对白皮紫罗兰(Peromyscus leucopus)区域人口增长的影响:现场参数化空间矩阵模型的见解

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Due to complex population dynamics and source–sink metapopulation processes, animal fitness sometimes varies across landscapes in ways that cannot be deduced from simple density patterns. In this study, we examine spatial patterns in fitness using a combination of intensive field-based analyses of demography and migration and spatial matrix models of white-footed mouse (Peromyscus leucopus) population dynamics. We interpret asymptotic population growth rates from these spatial models as fitness-based measures of habitat-quality and use elasticity analysis to further explore model behavior and the roles of migration. In addition, we compare population growth rates at the spatial scale of single habitats and the landscape-level scale at which these habitats are assembled. To this end, we employ emerging techniques in multi-scale estimation of demography and movement and recently described vec-permutation methods for spatial matrix notation and analysis. Our findings indicate that the loss of low quality habitats or reductions in movement from these habitats into higher quality areas could negatively affect landscape-level population fitness.
机译:由于复杂的种群动态和源库转移的过程,动物的适应性有时会因无法通过简单的密度模式推导出来的方式而在不同地域间变化。在这项研究中,我们结合人口统计学和迁移以及白脚小鼠(Peromyscus leucopus)种群动态的空间矩阵模型,结合密集的基于场的人口统计学分析和空间矩阵模型,研究了健身中的空间格局。我们将这些空间模型中的渐近种群增长率解释为基于适应度的生境质量度量,并使用弹性分析来进一步探索模型行为和迁移的作用。此外,我们比较了单个栖息地的空间规模和这些栖息地的景观水平规模下的人口增长率。为此,我们在人口统计学和运动的多尺度估计中采用了新兴技术,并且最近描述了用于空间矩阵符号和分析的vec置换方法。我们的研究结果表明,低质量栖息地的丧失或从这些栖息地向高质量区域迁移的减少可能会对景观人口适应度产生负面影响。

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