Institute of Ecology and Evolution, Division of Conservation Biology, University of Bern, Baltzerstrasse 6, CH-3012 Bern, Switzerland.
Ecology. 2010 Jan;91(1):7-14. doi: 10.1890/08-2235.1.
Understanding population dynamics requires accurate estimates of demographic rates. Integrated population models combine demographic and survey data into a single, comprehensive analysis and provide more coherent estimates of vital rates. Integrated population models rely on the assumption that different data sets are independent, which is frequently violated in practice. Moreover, the precision that can be gained using integrated modeling compared to conventional modeling is only known from empirical studies. The present study used simulation methods to assess how the violation of the assumption of independence affects the statistical properties of the parameter estimators. Further, the gains in precision and accuracy from the model were explored under varying sample sizes. For capture-recapture, population survey, and reproductive success, we generated independent and dependent data that were analyzed with integrated and conventional models. We found only a minimal impact of the violation of the assumption of independence on the parameter estimates. Furthermore, we observed an overall gain in precision and accuracy when all three data sets were analyzed simultaneously. This was particularly pronounced when the sample size was small. These findings contribute to clearing the way for the application of integrated population models in practice.
了解人口动态需要准确估计人口统计数据。综合人口模型将人口统计和调查数据结合到一个单一的、全面的分析中,并提供更一致的重要数据估计。综合人口模型依赖于不同数据集相互独立的假设,而在实践中,这种假设经常被违反。此外,与传统建模相比,综合建模可以获得的精度仅从经验研究中得知。本研究使用模拟方法评估了独立性假设的违反如何影响参数估计的统计性质。进一步,在不同的样本量下,探索了从模型中获得的精度和准确性的提高。对于捕获-再捕获、人口调查和繁殖成功率,我们生成了独立和相关的数据,这些数据使用综合和传统模型进行了分析。我们发现,独立性假设的违反对参数估计的影响很小。此外,当同时分析所有三个数据集时,我们观察到整体精度和准确性的提高。当样本量较小时,这种情况尤其明显。这些发现为综合人口模型在实践中的应用扫清了道路。