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开放种群空间捕获-重捕模型中的状态空间与运动规范

State space and movement specification in open population spatial capture-recapture models.

作者信息

Gardner Beth, Sollmann Rahel, Kumar N Samba, Jathanna Devcharan, Karanth K Ullas

机构信息

School of Environmental and Forest Sciences University of Washington Seattle Washington.

Department of Wildlife, Fish, and Conservation Biology University of California, Davis Davis California.

出版信息

Ecol Evol. 2018 Sep 27;8(20):10336-10344. doi: 10.1002/ece3.4509. eCollection 2018 Oct.

Abstract

With continued global changes, such as climate change, biodiversity loss, and habitat fragmentation, the need for assessment of long-term population dynamics and population monitoring of threatened species is growing. One powerful way to estimate population size and dynamics is through capture-recapture methods. Spatial capture (SCR) models for open populations make efficient use of capture-recapture data, while being robust to design changes. Relatively few studies have implemented open SCR models, and to date, very few have explored potential issues in defining these models. We develop a series of simulation studies to examine the effects of the state-space definition and between-primary-period movement models on demographic parameter estimation. We demonstrate the implications on a 10-year camera-trap study of tigers in India. The results of our simulation study show that movement biases survival estimates in open SCR models when little is known about between-primary-period movements of animals. The size of the state-space delineation can also bias the estimates of survival in certain cases.We found that both the state-space definition and the between-primary-period movement specification affected survival estimates in the analysis of the tiger dataset (posterior mean estimates of survival ranged from 0.71 to 0.89). In general, we suggest that open SCR models can provide an efficient and flexible framework for long-term monitoring of populations; however, in many cases, realistic modeling of between-primary-period movements is crucial for unbiased estimates of survival and density.

摘要

随着全球持续变化,如气候变化、生物多样性丧失和栖息地破碎化,评估受威胁物种的长期种群动态和进行种群监测的需求日益增加。估计种群规模和动态的一种有效方法是通过捕获再捕获方法。适用于开放种群的空间捕获(SCR)模型能有效利用捕获再捕获数据,同时对设计变化具有稳健性。实施开放SCR模型的研究相对较少,迄今为止,很少有研究探讨定义这些模型时的潜在问题。我们开展了一系列模拟研究,以检验状态空间定义和初级时期之间的移动模型对种群参数估计的影响。我们在印度对老虎进行的一项为期10年的相机陷阱研究中展示了其影响。我们的模拟研究结果表明,当对动物初级时期之间的移动了解甚少时,移动会使开放SCR模型中的生存估计产生偏差。在某些情况下,状态空间划定的大小也会使生存估计产生偏差。我们发现,在老虎数据集的分析中,状态空间定义和初级时期之间的移动规范都会影响生存估计(生存的后验均值估计范围为0.71至0.89)。总体而言,我们建议开放SCR模型可为种群的长期监测提供一个高效且灵活的框架;然而,在许多情况下,对初级时期之间的移动进行现实建模对于无偏估计生存和密度至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2770/6206188/7e0ca762f8eb/ECE3-8-10336-g001.jpg

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