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首页> 外文期刊>The Journal of Applied Ecology >A hierarchical model for estimating density in camera-trap studies
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A hierarchical model for estimating density in camera-trap studies

机译:估计密度的层次模型特征研究

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Estimating animal density using capture-recapture data from arrays of detection devices such as camera traps has been problematic due to the movement of individuals and heterogeneity in capture probability among them induced by differential exposure to trapping. We develop a spatial capture-recapture model for estimating density from camera-trapping data which contains explicit models for the spatial point process governing the distribution of individuals and their exposure to and detection by traps. We adopt a Bayesian approach to analysis of the hierarchical model using the technique of data augmentation. The model is applied to photographic capture-recapture data on tigers Panthera tigris in Nagarahole reserve, India. Using this model, we estimate the density of tigers to be 14.3 animals per 100 km(2) during 2004. Synthesis and applications. Our modelling framework largely overcomes several weaknesses in conventional approaches to the estimation of animal density from trap arrays. It effectively deals with key problems such as individual heterogeneity in capture probabilities, movement of traps, presence of potential 'holes' in the array and ad hoc estimation of sample area. The formulation, thus, greatly enhances flexibility in the conduct of field surveys as well as in the analysis of data, from studies that may involve physical, photographic or DNA-based 'captures' of individual animals.
机译:使用之前的估计动物密度数组的数据检测设备等由于相机陷阱一直存在问题运动的个人和异质性捕获概率其中引起的微分接触捕获。空间再估算模型它包含从相机陷阱密度数据显式模型的空间点的过程管理个人和的分布他们的接触和陷阱的检测。采用贝叶斯方法的分析层次模型使用的技术数据增加。摄影再数据老虎印度豹属底格里斯河Nagarahole储备。使用这个模型,我们估计的密度老虎是每100公里(2)在14.3的动物2004. 框架在很大程度上克服了一些弱点传统的估计方法动物从陷阱密度阵列。处理个人等关键问题异质性在捕获概率,运动的陷阱,存在潜在的“漏洞”数组和特别的样本估计区域。制定,因此,大大增强了灵活性进行的实地调查以及可能涉及的数据分析,从研究物理、摄影或dna的“捕获”动物个体。

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