首页> 外文OA文献 >Hierarchical modelling of population growth rate from individual capture-recapture data
【2h】

Hierarchical modelling of population growth rate from individual capture-recapture data

机译:从个体捕获-捕获数据中进行人口增长率的分层建模

摘要

Estimating rates of population change is essential to achieving theoretical and applied goals in population ecology, and the Pradel (1996, Biometrics, 52: 703.) temporal symmetry method permits direct estimation and modelling of the growth rate of open populations, using capture-recapture data from marked animals. We present a Bayesian formulation of the Pradel approach that permits a hierarchical modelling of the biological and sampling processes. Two parametrizations for the temporal symmetry likelihood are presented and implemented into a general purpose software in BUGS language. We first consider a set of simulated scenarios to evaluate performance of a Bayesian variable selection approach to test the temporal linear trend on survival and seniority probability, population growth rate and detectability. We then provide an example application on individual detection information of three species of burrowing nesting seabirds, whose populations cannot be directly counted. For each species, we assess the strength of evidence for temporal random variation and the temporal linear trend on survival probability, population growth rate and detectability. The Bayesian formulation provides more flexibility, by easily allowing the extension of the original fixed time effects structure to random time effects, an option that is still impractical in a frequentist framework. © 2014 British Ecological Society.
机译:估计种群变化的速率对于实现种群生态学的理论和应用目标至关重要,Pradel(1996,Biometrics,52:703.)时间对称方法允许使用捕获-捕获方法直接估算和建模开放种群的增长率来自标记动物的数据。我们介绍了Pradel方法的贝叶斯公式,它允许对生物学和采样过程进行分层建模。提出了两个关于时间对称性可能性的参数化参数,并将其实现为BUGS语言的通用软件。我们首先考虑一组模拟场景,以评估贝叶斯变量选择方法的性能,以测试生存和资历概率,人口增长率和可检测性的时间线性趋势。然后,我们提供了一个示例应用程序,用于无法直接计数其种群的三种穴居巢海鸟的个体检测信息。对于每个物种,我们评估时间随机变异的证据强度以及生存概率,种群增长率和可检测性的时间线性趋势。贝叶斯公式通过轻松地将原始的固定时间效果结构扩展为随机时间效果而提供了更大的灵活性,这在频频主义者的框架中仍然不切实际。 ©2014英国生态学会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号